Datasheet Mouse GAPDH promoter pp1045 DATASHEET Datasheet description | Download |
The primer pair cat # pp-1044-050, 500 is specific to a promoter region of the glyceraldehyde-3-phosphate dehydrogenase (GAPDH) gene from mouse. The primers are optimized to be used in quantitative polymerase chain reaction (qPCR).
Datasheet Mouse GAPDH promoter pp1045 DATASHEET Datasheet description | Download |
How to properly cite this product in your workDiagenode strongly recommends using this: Mouse GAPDH promoter primer pair (Diagenode Cat# C17021045-500). Click here to copy to clipboard. Using our products in your publication? Let us know! |
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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'format' => '1 unit', 'catalog_number' => 'B01060010', 'old_catalog_number' => '', 'sf_code' => 'B01060010-', 'type' => 'ACC', 'search_order' => '00-Machine', 'price_EUR' => '24000', 'price_USD' => '27500', 'price_GBP' => '21000', 'price_JPY' => '3759600', 'price_CNY' => 'Discontinued', 'price_AUD' => '68750', 'country' => 'ALL', 'except_countries' => 'None', 'quote' => false, 'in_stock' => true, 'featured' => false, 'no_promo' => false, 'online' => true, 'master' => true, 'last_datasheet_update' => '0000-00-00', 'slug' => 'bioruptor-pico-sonication-device', 'meta_title' => 'Bioruptor® Pico sonication device for RNA,Chromatin and DNA shearing for Next-Generation-Sequencing | Diagenode', 'meta_keywords' => 'Bioruptor, sonication, Next-Generation-Sequencing,DNA shearing,Protein extraction', 'meta_description' => 'An all-in-one shearing system Ideal for DNA shearing for Next-Generation-Sequencing,Chromatin shearing,RNA shearing,Protein extraction from tissues and cells and FFPE DNA extraction', 'modified' => '2023-12-20 14:21:02', 'created' => '2015-06-29 14:08:20', 'ProductsRelated' => array( [maximum depth reached] ), 'Image' => array( [maximum depth reached] ) ) ), 'Application' => array(), 'Category' => array( (int) 0 => array( 'id' => '70', 'position' => '1', 'parent_id' => '35', 'name' => 'Mouse', 'description' => '<p>Primer pairs - Mouse</p>', 'no_promo' => false, 'in_menu' => false, 'online' => true, 'tabular' => true, 'hide' => false, 'all_format' => false, 'is_antibody' => false, 'slug' => 'primer-pairs-mouse', 'cookies_tag_id' => null, 'meta_keywords' => 'primer pairs mouse ,chromatin immunoprecipitation (ChIP)', 'meta_description' => 'Diagenode offers Primer pairs to be used to amplify DNA isolated by chromatin immunoprecipitation (ChIP). 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The cognate mGlu5 receptor is absent in mature PCs and shows low expression levels in the adult cerebellar cortex. Here we found that mGlu5 receptors were heavily expressed by PCs in the early postnatal life, when mGlu1α receptors were barely detectable. The developmental decline of mGlu5 receptors coincided with the appearance of mGlu1α receptors in PCs, and both processes were associated with specular changes in CpG methylation in the corresponding gene promoters. It was the mGlu1 receptor that drove the elimination of mGlu5 receptors from PCs, as shown by data obtained with conditional mGlu1α receptor knockout mice and with targeted pharmacological treatments during critical developmental time windows. The suppressing activity of mGlu1 receptors on mGlu5 receptor was maintained in mature PCs, suggesting that expression of mGlu1α and mGlu5 receptors is mutually exclusive in PCs. These findings add complexity to the the finely tuned mechanisms that regulate PC biology during development and in the adult life and lay the groundwork for an in-depth analysis of the role played by mGlu5 receptors in PC maturation.</p>', 'date' => '2018-09-06', 'pmid' => 'http://www.pubmed.gov/30190524', 'doi' => '10.1038/s41598-018-31369-7', 'modified' => '2018-12-31 11:36:04', 'created' => '2018-12-04 09:51:07', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 1 => array( 'id' => '3183', 'name' => 'High resolution methylation analysis of the HoxA5 regulatory region in different somatic tissues of laboratory mouse during development', 'authors' => 'Sinha P. et al.', 'description' => '<p>Homeobox genes encode a group of DNA binding regulatory proteins whose key function occurs in the spatial-temporal organization of genome during embryonic development and differentiation. The role of these Hox genes during ontogenesis makes it an important model for research. HoxA5 is a member of Hox gene family playing a central role during axial body patterning and morphogenesis. DNA modification studies have shown that the function of Hox genes is partly governed by the methylation-mediated gene expression regulation. Therefore the study aimed to investigate the role of epigenetic events in regulation of tissue-specific expression pattern of HoxA5 gene during mammalian development. The methodology adopted were sodium bisulfite genomic DNA sequencing, quantitative real-time PCR and chromatin-immunoprecipitation (ChIP). Methylation profiling of HoxA5 gene promoter shows higher methylation in adult as compared to fetus in various somatic tissues of mouse being highest in adult spleen. However q-PCR results show higher expression during fetal stages being highest in fetal intestine followed by brain, liver and spleen. These results clearly indicate a strict correlation between DNA methylation and tissue-specific gene expression. The findings of chromatin-immunoprecipitation (ChIP) have also reinforced that epigenetic event like DNA methylation plays important role in the regulation of tissue specific expression of HoxA5.</p>', 'date' => '2017-01-02', 'pmid' => 'https://www.ncbi.nlm.nih.gov/pubmed/28363633', 'doi' => '', 'modified' => '2017-05-22 09:48:38', 'created' => '2017-05-22 09:48:38', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 2 => array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. The promoter-chromatin status of Sox9 was also studied with a chromatin immune-precipitation assay.</p>', 'date' => '2016-07-04', 'pmid' => 'http://www.ncbi.nlm.nih.gov/pubmed/27381637', 'doi' => '10.1590/1678-4685-GMB-2015-0172', 'modified' => '2016-07-11 12:31:08', 'created' => '2016-07-11 12:31:08', 'ProductsPublication' => array( [maximum depth reached] ) ) ), 'Testimonial' => array(), 'Area' => array(), 'SafetySheet' => array() ) $meta_canonical = 'https://www.diagenode.com/jp/p/mouse-gapdh-promoter-primer-pair-50-ul' $country = 'US' $countries_allowed = array( (int) 0 => 'CA', (int) 1 => 'US', (int) 2 => 'IE', (int) 3 => 'GB', (int) 4 => 'DK', (int) 5 => 'NO', (int) 6 => 'SE', (int) 7 => 'FI', (int) 8 => 'NL', (int) 9 => 'BE', (int) 10 => 'LU', (int) 11 => 'FR', (int) 12 => 'DE', (int) 13 => 'CH', (int) 14 => 'AT', (int) 15 => 'ES', (int) 16 => 'IT', (int) 17 => 'PT' ) $outsource = false $other_formats = array( (int) 0 => array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. 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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'label2' => 'Recommended settings for DNA shearing with Bioruptor® Pico', 'info2' => '<p>Follow our guidelines and find the good parameters for your expected DNA size: <a href="https://pybrevet.typeform.com/to/o8cQfM">DNA shearing with the Bioruptor® Pico</a></p> <p></p> <p> <script>// 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id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'label3' => 'Available chromatin shearing kits', 'info3' => '<p>It is important to establish optimal conditions to shear crosslinked chromatin to get the correct fragment sizes needed for ChIP. Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div 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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'format' => '1 unit', 'catalog_number' => 'B01060010', 'old_catalog_number' => '', 'sf_code' => 'B01060010-', 'type' => 'ACC', 'search_order' => '00-Machine', 'price_EUR' => '24000', 'price_USD' => '27500', 'price_GBP' => '21000', 'price_JPY' => '3759600', 'price_CNY' => 'Discontinued', 'price_AUD' => '68750', 'country' => 'ALL', 'except_countries' => 'None', 'quote' => false, 'in_stock' => true, 'featured' => false, 'no_promo' => false, 'online' => true, 'master' => true, 'last_datasheet_update' => '0000-00-00', 'slug' => 'bioruptor-pico-sonication-device', 'meta_title' => 'Bioruptor® Pico sonication device for RNA,Chromatin and DNA shearing for Next-Generation-Sequencing | Diagenode', 'meta_keywords' => 'Bioruptor, sonication, Next-Generation-Sequencing,DNA shearing,Protein extraction', 'meta_description' => 'An all-in-one shearing system Ideal for DNA shearing for Next-Generation-Sequencing,Chromatin shearing,RNA shearing,Protein extraction from tissues and cells and FFPE DNA extraction', 'modified' => '2023-12-20 14:21:02', 'created' => '2015-06-29 14:08:20', 'ProductsRelated' => array( [maximum depth reached] ), 'Image' => array( [maximum depth reached] ) ) ), 'Application' => array(), 'Category' => array( (int) 0 => array( 'id' => '70', 'position' => '1', 'parent_id' => '35', 'name' => 'Mouse', 'description' => '<p>Primer pairs - Mouse</p>', 'no_promo' => false, 'in_menu' => false, 'online' => true, 'tabular' => true, 'hide' => false, 'all_format' => false, 'is_antibody' => false, 'slug' => 'primer-pairs-mouse', 'cookies_tag_id' => null, 'meta_keywords' => 'primer pairs mouse ,chromatin immunoprecipitation (ChIP)', 'meta_description' => 'Diagenode offers Primer pairs to be used to amplify DNA isolated by chromatin immunoprecipitation (ChIP). 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The cognate mGlu5 receptor is absent in mature PCs and shows low expression levels in the adult cerebellar cortex. Here we found that mGlu5 receptors were heavily expressed by PCs in the early postnatal life, when mGlu1α receptors were barely detectable. The developmental decline of mGlu5 receptors coincided with the appearance of mGlu1α receptors in PCs, and both processes were associated with specular changes in CpG methylation in the corresponding gene promoters. It was the mGlu1 receptor that drove the elimination of mGlu5 receptors from PCs, as shown by data obtained with conditional mGlu1α receptor knockout mice and with targeted pharmacological treatments during critical developmental time windows. The suppressing activity of mGlu1 receptors on mGlu5 receptor was maintained in mature PCs, suggesting that expression of mGlu1α and mGlu5 receptors is mutually exclusive in PCs. These findings add complexity to the the finely tuned mechanisms that regulate PC biology during development and in the adult life and lay the groundwork for an in-depth analysis of the role played by mGlu5 receptors in PC maturation.</p>', 'date' => '2018-09-06', 'pmid' => 'http://www.pubmed.gov/30190524', 'doi' => '10.1038/s41598-018-31369-7', 'modified' => '2018-12-31 11:36:04', 'created' => '2018-12-04 09:51:07', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 1 => array( 'id' => '3183', 'name' => 'High resolution methylation analysis of the HoxA5 regulatory region in different somatic tissues of laboratory mouse during development', 'authors' => 'Sinha P. et al.', 'description' => '<p>Homeobox genes encode a group of DNA binding regulatory proteins whose key function occurs in the spatial-temporal organization of genome during embryonic development and differentiation. The role of these Hox genes during ontogenesis makes it an important model for research. HoxA5 is a member of Hox gene family playing a central role during axial body patterning and morphogenesis. DNA modification studies have shown that the function of Hox genes is partly governed by the methylation-mediated gene expression regulation. Therefore the study aimed to investigate the role of epigenetic events in regulation of tissue-specific expression pattern of HoxA5 gene during mammalian development. The methodology adopted were sodium bisulfite genomic DNA sequencing, quantitative real-time PCR and chromatin-immunoprecipitation (ChIP). Methylation profiling of HoxA5 gene promoter shows higher methylation in adult as compared to fetus in various somatic tissues of mouse being highest in adult spleen. However q-PCR results show higher expression during fetal stages being highest in fetal intestine followed by brain, liver and spleen. These results clearly indicate a strict correlation between DNA methylation and tissue-specific gene expression. The findings of chromatin-immunoprecipitation (ChIP) have also reinforced that epigenetic event like DNA methylation plays important role in the regulation of tissue specific expression of HoxA5.</p>', 'date' => '2017-01-02', 'pmid' => 'https://www.ncbi.nlm.nih.gov/pubmed/28363633', 'doi' => '', 'modified' => '2017-05-22 09:48:38', 'created' => '2017-05-22 09:48:38', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 2 => array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. The promoter-chromatin status of Sox9 was also studied with a chromatin immune-precipitation assay.</p>', 'date' => '2016-07-04', 'pmid' => 'http://www.ncbi.nlm.nih.gov/pubmed/27381637', 'doi' => '10.1590/1678-4685-GMB-2015-0172', 'modified' => '2016-07-11 12:31:08', 'created' => '2016-07-11 12:31:08', 'ProductsPublication' => array( [maximum depth reached] ) ) ), 'Testimonial' => array(), 'Area' => array(), 'SafetySheet' => array() ) $meta_canonical = 'https://www.diagenode.com/jp/p/mouse-gapdh-promoter-primer-pair-50-ul' $country = 'US' $countries_allowed = array( (int) 0 => 'CA', (int) 1 => 'US', (int) 2 => 'IE', (int) 3 => 'GB', (int) 4 => 'DK', (int) 5 => 'NO', (int) 6 => 'SE', (int) 7 => 'FI', (int) 8 => 'NL', (int) 9 => 'BE', (int) 10 => 'LU', (int) 11 => 'FR', (int) 12 => 'DE', (int) 13 => 'CH', (int) 14 => 'AT', (int) 15 => 'ES', (int) 16 => 'IT', (int) 17 => 'PT' ) $outsource = false $other_formats = array( (int) 0 => array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div 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11:01:33', 'created' => '2018-03-06 11:01:33', 'ProductsImage' => array( [maximum depth reached] ) ) ) ) $rrbs_service = array( (int) 0 => (int) 1894, (int) 1 => (int) 1895 ) $chipseq_service = array( (int) 0 => (int) 2683, (int) 1 => (int) 1835, (int) 2 => (int) 1836, (int) 3 => (int) 2684, (int) 4 => (int) 1838, (int) 5 => (int) 1839, (int) 6 => (int) 1856 ) $labelize = object(Closure) { } $old_catalog_number = ' <span style="color:#CCC">(pp-1045-050)</span>' $country_code = 'US' $other_format = array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. No. C17021045 is specific to a promoter region of the glyceraldehyde-3-phosphate dehydrogenase (GAPDH) gene from mouse. The primers are optimized to be used in quantitative polymerase chain reaction (qPCR).</span></p>', 'label1' => '', 'info1' => '', 'label2' => '', 'info2' => '', 'label3' => '', 'info3' => '', 'format' => '50 µl', 'catalog_number' => 'C17021045-50', 'old_catalog_number' => 'pp-1045-050', 'sf_code' => 'C17021045-D001-000014', 'type' => 'FRE', 'search_order' => '01-Accessory', 'price_EUR' => '60', 'price_USD' => '35', 'price_GBP' => '60', 'price_JPY' => '9400', 'price_CNY' => '', 'price_AUD' => '88', 'country' => 'ALL', 'except_countries' => 'None', 'quote' => false, 'in_stock' => false, 'featured' => false, 'no_promo' => false, 'online' => true, 'master' => true, 'last_datasheet_update' => '0000-00-00', 'slug' => 'mouse-gapdh-promoter-primer-pair-50-ul', 'meta_title' => 'Mouse GAPDH promoter primer pair', 'meta_keywords' => '', 'meta_description' => 'Mouse GAPDH promoter primer pair', 'modified' => '2021-01-18 10:00:33', 'created' => '2015-06-29 14:08:20' ) $label = '<img src="/img/banners/banner-customizer-back.png" alt=""/>' $document = array( 'id' => '248', 'name' => 'Datasheet Mouse GAPDH promoter pp1045', 'description' => 'Datasheet description', 'image_id' => null, 'type' => 'Datasheet', 'url' => 'files/products/reagents/primer_pairs/Datasheet_Mouse_GAPDH_promoter_pp1045.pdf', 'slug' => 'datasheet-mouse-gapdh-promoter-pp1045', 'meta_keywords' => null, 'meta_description' => null, 'modified' => '2015-07-07 11:47:43', 'created' => '2015-07-07 11:47:43', 'ProductsDocument' => array( 'id' => '764', 'product_id' => '2596', 'document_id' => '248' ) ) $publication = array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. 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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; 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The cognate mGlu5 receptor is absent in mature PCs and shows low expression levels in the adult cerebellar cortex. Here we found that mGlu5 receptors were heavily expressed by PCs in the early postnatal life, when mGlu1α receptors were barely detectable. The developmental decline of mGlu5 receptors coincided with the appearance of mGlu1α receptors in PCs, and both processes were associated with specular changes in CpG methylation in the corresponding gene promoters. It was the mGlu1 receptor that drove the elimination of mGlu5 receptors from PCs, as shown by data obtained with conditional mGlu1α receptor knockout mice and with targeted pharmacological treatments during critical developmental time windows. The suppressing activity of mGlu1 receptors on mGlu5 receptor was maintained in mature PCs, suggesting that expression of mGlu1α and mGlu5 receptors is mutually exclusive in PCs. These findings add complexity to the the finely tuned mechanisms that regulate PC biology during development and in the adult life and lay the groundwork for an in-depth analysis of the role played by mGlu5 receptors in PC maturation.</p>', 'date' => '2018-09-06', 'pmid' => 'http://www.pubmed.gov/30190524', 'doi' => '10.1038/s41598-018-31369-7', 'modified' => '2018-12-31 11:36:04', 'created' => '2018-12-04 09:51:07', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 1 => array( 'id' => '3183', 'name' => 'High resolution methylation analysis of the HoxA5 regulatory region in different somatic tissues of laboratory mouse during development', 'authors' => 'Sinha P. et al.', 'description' => '<p>Homeobox genes encode a group of DNA binding regulatory proteins whose key function occurs in the spatial-temporal organization of genome during embryonic development and differentiation. The role of these Hox genes during ontogenesis makes it an important model for research. HoxA5 is a member of Hox gene family playing a central role during axial body patterning and morphogenesis. DNA modification studies have shown that the function of Hox genes is partly governed by the methylation-mediated gene expression regulation. Therefore the study aimed to investigate the role of epigenetic events in regulation of tissue-specific expression pattern of HoxA5 gene during mammalian development. The methodology adopted were sodium bisulfite genomic DNA sequencing, quantitative real-time PCR and chromatin-immunoprecipitation (ChIP). Methylation profiling of HoxA5 gene promoter shows higher methylation in adult as compared to fetus in various somatic tissues of mouse being highest in adult spleen. However q-PCR results show higher expression during fetal stages being highest in fetal intestine followed by brain, liver and spleen. These results clearly indicate a strict correlation between DNA methylation and tissue-specific gene expression. The findings of chromatin-immunoprecipitation (ChIP) have also reinforced that epigenetic event like DNA methylation plays important role in the regulation of tissue specific expression of HoxA5.</p>', 'date' => '2017-01-02', 'pmid' => 'https://www.ncbi.nlm.nih.gov/pubmed/28363633', 'doi' => '', 'modified' => '2017-05-22 09:48:38', 'created' => '2017-05-22 09:48:38', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 2 => array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. The promoter-chromatin status of Sox9 was also studied with a chromatin immune-precipitation assay.</p>', 'date' => '2016-07-04', 'pmid' => 'http://www.ncbi.nlm.nih.gov/pubmed/27381637', 'doi' => '10.1590/1678-4685-GMB-2015-0172', 'modified' => '2016-07-11 12:31:08', 'created' => '2016-07-11 12:31:08', 'ProductsPublication' => array( [maximum depth reached] ) ) ), 'Testimonial' => array(), 'Area' => array(), 'SafetySheet' => array() ) $meta_canonical = 'https://www.diagenode.com/jp/p/mouse-gapdh-promoter-primer-pair-50-ul' $country = 'US' $countries_allowed = array( (int) 0 => 'CA', (int) 1 => 'US', (int) 2 => 'IE', (int) 3 => 'GB', (int) 4 => 'DK', (int) 5 => 'NO', (int) 6 => 'SE', (int) 7 => 'FI', (int) 8 => 'NL', (int) 9 => 'BE', (int) 10 => 'LU', (int) 11 => 'FR', (int) 12 => 'DE', (int) 13 => 'CH', (int) 14 => 'AT', (int) 15 => 'ES', (int) 16 => 'IT', (int) 17 => 'PT' ) $outsource = false $other_formats = array( (int) 0 => array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. 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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div 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Check it now:</span></p> <center><span></span></center><center><a href="https://www.diagenode.com/p/bioruptorpico2"> <img alt="New Bioruptor Pico" src="https://www.diagenode.com/img/product/shearing_technologies/new-pico-product-banner.jpg" /></a></center> <p></p> <p><span>Watch our short video about the Bioruptor Pico and how it can help you accomplish perfect shearing for any application including chromatin shearing, DNA shearing for NGS, unmatched DNA extraction from FFPE samples, RNA shearing, protein extraction, and much more.</span></p> <p> <script>// <![CDATA[ (function(){var 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data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'label2' => 'Recommended settings for DNA shearing with Bioruptor® Pico', 'info2' => '<p>Follow our guidelines and find the good parameters for your expected DNA size: <a href="https://pybrevet.typeform.com/to/o8cQfM">DNA shearing with the Bioruptor® Pico</a></p> <p></p> <p> <script>// 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id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'label3' => 'Available chromatin shearing kits', 'info3' => '<p>It is important to establish optimal conditions to shear crosslinked chromatin to get the correct fragment sizes needed for ChIP. Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <script src="chrome-extension://hhojmcideegachlhfgfdhailpfhgknjm/web_accessible_resources/index.js"></script> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'format' => '1 unit', 'catalog_number' => 'B01060010', 'old_catalog_number' => '', 'sf_code' => 'B01060010-', 'type' => 'ACC', 'search_order' => '00-Machine', 'price_EUR' => '24000', 'price_USD' => '27500', 'price_GBP' => '21000', 'price_JPY' => '3759600', 'price_CNY' => 'Discontinued', 'price_AUD' => '68750', 'country' => 'ALL', 'except_countries' => 'None', 'quote' => false, 'in_stock' => true, 'featured' => false, 'no_promo' => false, 'online' => true, 'master' => true, 'last_datasheet_update' => '0000-00-00', 'slug' => 'bioruptor-pico-sonication-device', 'meta_title' => 'Bioruptor® Pico sonication device for RNA,Chromatin and DNA shearing for Next-Generation-Sequencing | Diagenode', 'meta_keywords' => 'Bioruptor, sonication, Next-Generation-Sequencing,DNA shearing,Protein extraction', 'meta_description' => 'An all-in-one shearing system Ideal for DNA shearing for Next-Generation-Sequencing,Chromatin shearing,RNA shearing,Protein extraction from tissues and cells and FFPE DNA extraction', 'modified' => '2023-12-20 14:21:02', 'created' => '2015-06-29 14:08:20', 'ProductsRelated' => array( [maximum depth reached] ), 'Image' => array( [maximum depth reached] ) ) ), 'Application' => array(), 'Category' => array( (int) 0 => array( 'id' => '70', 'position' => '1', 'parent_id' => '35', 'name' => 'Mouse', 'description' => '<p>Primer pairs - Mouse</p>', 'no_promo' => false, 'in_menu' => false, 'online' => true, 'tabular' => true, 'hide' => false, 'all_format' => false, 'is_antibody' => false, 'slug' => 'primer-pairs-mouse', 'cookies_tag_id' => null, 'meta_keywords' => 'primer pairs mouse ,chromatin immunoprecipitation (ChIP)', 'meta_description' => 'Diagenode offers Primer pairs to be used to amplify DNA isolated by chromatin immunoprecipitation (ChIP). 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The cognate mGlu5 receptor is absent in mature PCs and shows low expression levels in the adult cerebellar cortex. Here we found that mGlu5 receptors were heavily expressed by PCs in the early postnatal life, when mGlu1α receptors were barely detectable. The developmental decline of mGlu5 receptors coincided with the appearance of mGlu1α receptors in PCs, and both processes were associated with specular changes in CpG methylation in the corresponding gene promoters. It was the mGlu1 receptor that drove the elimination of mGlu5 receptors from PCs, as shown by data obtained with conditional mGlu1α receptor knockout mice and with targeted pharmacological treatments during critical developmental time windows. The suppressing activity of mGlu1 receptors on mGlu5 receptor was maintained in mature PCs, suggesting that expression of mGlu1α and mGlu5 receptors is mutually exclusive in PCs. These findings add complexity to the the finely tuned mechanisms that regulate PC biology during development and in the adult life and lay the groundwork for an in-depth analysis of the role played by mGlu5 receptors in PC maturation.</p>', 'date' => '2018-09-06', 'pmid' => 'http://www.pubmed.gov/30190524', 'doi' => '10.1038/s41598-018-31369-7', 'modified' => '2018-12-31 11:36:04', 'created' => '2018-12-04 09:51:07', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 1 => array( 'id' => '3183', 'name' => 'High resolution methylation analysis of the HoxA5 regulatory region in different somatic tissues of laboratory mouse during development', 'authors' => 'Sinha P. et al.', 'description' => '<p>Homeobox genes encode a group of DNA binding regulatory proteins whose key function occurs in the spatial-temporal organization of genome during embryonic development and differentiation. The role of these Hox genes during ontogenesis makes it an important model for research. HoxA5 is a member of Hox gene family playing a central role during axial body patterning and morphogenesis. DNA modification studies have shown that the function of Hox genes is partly governed by the methylation-mediated gene expression regulation. Therefore the study aimed to investigate the role of epigenetic events in regulation of tissue-specific expression pattern of HoxA5 gene during mammalian development. The methodology adopted were sodium bisulfite genomic DNA sequencing, quantitative real-time PCR and chromatin-immunoprecipitation (ChIP). Methylation profiling of HoxA5 gene promoter shows higher methylation in adult as compared to fetus in various somatic tissues of mouse being highest in adult spleen. However q-PCR results show higher expression during fetal stages being highest in fetal intestine followed by brain, liver and spleen. These results clearly indicate a strict correlation between DNA methylation and tissue-specific gene expression. The findings of chromatin-immunoprecipitation (ChIP) have also reinforced that epigenetic event like DNA methylation plays important role in the regulation of tissue specific expression of HoxA5.</p>', 'date' => '2017-01-02', 'pmid' => 'https://www.ncbi.nlm.nih.gov/pubmed/28363633', 'doi' => '', 'modified' => '2017-05-22 09:48:38', 'created' => '2017-05-22 09:48:38', 'ProductsPublication' => array( [maximum depth reached] ) ), (int) 2 => array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. The promoter-chromatin status of Sox9 was also studied with a chromatin immune-precipitation assay.</p>', 'date' => '2016-07-04', 'pmid' => 'http://www.ncbi.nlm.nih.gov/pubmed/27381637', 'doi' => '10.1590/1678-4685-GMB-2015-0172', 'modified' => '2016-07-11 12:31:08', 'created' => '2016-07-11 12:31:08', 'ProductsPublication' => array( [maximum depth reached] ) ) ), 'Testimonial' => array(), 'Area' => array(), 'SafetySheet' => array() ) $meta_canonical = 'https://www.diagenode.com/jp/p/mouse-gapdh-promoter-primer-pair-50-ul' $country = 'US' $countries_allowed = array( (int) 0 => 'CA', (int) 1 => 'US', (int) 2 => 'IE', (int) 3 => 'GB', (int) 4 => 'DK', (int) 5 => 'NO', (int) 6 => 'SE', (int) 7 => 'FI', (int) 8 => 'NL', (int) 9 => 'BE', (int) 10 => 'LU', (int) 11 => 'FR', (int) 12 => 'DE', (int) 13 => 'CH', (int) 14 => 'AT', (int) 15 => 'ES', (int) 16 => 'IT', (int) 17 => 'PT' ) $outsource = false $other_formats = array( (int) 0 => array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. 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data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div>', 'label1' => 'User manual ', 'info1' => '<p><a href="https://www.diagenode.com/files/products/shearing_technology/bioruptor/Bioruptor_pico_cooler_manual.pdf">Download</a></p> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div 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Usually this process requires both optimizing sonication conditions as well as optimizing SDS concentration, which is laborious. With the Chromatin Shearing Optimization Kits, optimization is fast and easy - we provide optimization reagents with varying concentrations of SDS. Moreover, our Chromatin Shearing Optimization Kits can be used for the optimization of chromatin preparation with our kits for ChIP.</p> <table style="width: 925px;"> <tbody> <tr valign="middle"> <td style="width: 213px;"></td> <td style="text-align: center; width: 208px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-100-million-cells">Chromatin Shearing Kit Low SDS (for Histones)</a></strong></td> <td style="text-align: center; width: 180px;"><strong><a href="../p/chromatin-shearing-optimization-kit-low-sds-for-tfs-25-rxns">Chromatin Shearing Kit Low SDS (for TF)</a></strong></td> <td style="text-align: center; width: 154px;"><strong><a href="../p/chromatin-shearing-optimization-kit-high-sds-100-million-cells">Chromatin Shearing Kit High SDS</a></strong></td> <td style="text-align: center; width: 155px;"><strong><a href="../p/chromatin-shearing-plant-chip-seq-kit">Chromatin Shearing Kit (for Plant)</a></strong></td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>SDS concentration</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">< 0.1%</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">0.2%</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">1%</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">0.5%</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Nuclei isolation</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">Yes</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">No</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">Yes</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Allows for shearing of... cells/tissue</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;">100 million cells</p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;">up to 25 g of tissue</p> </td> </tr> <tr style="background-color: #fff;" valign="middle"> <td style="width: 213px;"> <p style="text-align: left;"><strong>Corresponding to shearing buffers from</strong></p> </td> <td style="text-align: center; width: 208px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-x24-24-rxns">iDeal ChIP-seq kit for Histones</a></p> <p style="text-align: center;"><a href="https://www.diagenode.com/en/p/manual-chipmentation-kit-for-histones-24-rxns">ChIPmentation Kit for Histones</a></p> </td> <td style="text-align: center; width: 180px;"> <p style="text-align: center;"><a href="../p/ideal-chip-seq-kit-for-transcription-factors-x24-24-rxns">iDeal ChIP-seq Kit for Transcription Factors</a></p> <p style="text-align: center;"><a href="../p/ideal-chip-qpcr-kit">iDeal ChIP qPCR kit</a></p> </td> <td style="text-align: center; width: 154px;"> <p style="text-align: center;"><a href="../p/true-microchip-kit-x16-16-rxns">True MicroChIP kit</a></p> </td> <td style="text-align: center; width: 155px;"> <p style="text-align: center;"><a href="../p/universal-plant-chip-seq-kit-x24-24-rxns">Universal Plant <br />ChIP-seq kit</a></p> </td> </tr> </tbody> </table> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div id="ConnectiveDocSignExtentionInstalled" data-extension-version="1.0.4"></div> <div 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11:01:33', 'created' => '2018-03-06 11:01:33', 'ProductsImage' => array( [maximum depth reached] ) ) ) ) $rrbs_service = array( (int) 0 => (int) 1894, (int) 1 => (int) 1895 ) $chipseq_service = array( (int) 0 => (int) 2683, (int) 1 => (int) 1835, (int) 2 => (int) 1836, (int) 3 => (int) 2684, (int) 4 => (int) 1838, (int) 5 => (int) 1839, (int) 6 => (int) 1856 ) $labelize = object(Closure) { } $old_catalog_number = ' <span style="color:#CCC">(pp-1045-050)</span>' $country_code = 'US' $other_format = array( 'id' => '2595', 'antibody_id' => null, 'name' => 'Mouse GAPDH promoter primer pair', 'description' => '<p><span>The primer pair Cat. No. C17021045 is specific to a promoter region of the glyceraldehyde-3-phosphate dehydrogenase (GAPDH) gene from mouse. The primers are optimized to be used in quantitative polymerase chain reaction (qPCR).</span></p>', 'label1' => '', 'info1' => '', 'label2' => '', 'info2' => '', 'label3' => '', 'info3' => '', 'format' => '50 µl', 'catalog_number' => 'C17021045-50', 'old_catalog_number' => 'pp-1045-050', 'sf_code' => 'C17021045-D001-000014', 'type' => 'FRE', 'search_order' => '01-Accessory', 'price_EUR' => '60', 'price_USD' => '35', 'price_GBP' => '60', 'price_JPY' => '9400', 'price_CNY' => '', 'price_AUD' => '88', 'country' => 'ALL', 'except_countries' => 'None', 'quote' => false, 'in_stock' => false, 'featured' => false, 'no_promo' => false, 'online' => true, 'master' => true, 'last_datasheet_update' => '0000-00-00', 'slug' => 'mouse-gapdh-promoter-primer-pair-50-ul', 'meta_title' => 'Mouse GAPDH promoter primer pair', 'meta_keywords' => '', 'meta_description' => 'Mouse GAPDH promoter primer pair', 'modified' => '2021-01-18 10:00:33', 'created' => '2015-06-29 14:08:20' ) $label = '<img src="/img/banners/banner-customizer-back.png" alt=""/>' $document = array( 'id' => '248', 'name' => 'Datasheet Mouse GAPDH promoter pp1045', 'description' => 'Datasheet description', 'image_id' => null, 'type' => 'Datasheet', 'url' => 'files/products/reagents/primer_pairs/Datasheet_Mouse_GAPDH_promoter_pp1045.pdf', 'slug' => 'datasheet-mouse-gapdh-promoter-pp1045', 'meta_keywords' => null, 'meta_description' => null, 'modified' => '2015-07-07 11:47:43', 'created' => '2015-07-07 11:47:43', 'ProductsDocument' => array( 'id' => '764', 'product_id' => '2596', 'document_id' => '248' ) ) $publication = array( 'id' => '2979', 'name' => 'Methylation of the Sox9 and Oct4 promoters and its correlation with gene expression during testicular development in the laboratory mouse', 'authors' => 'Pamnani M et al.', 'description' => '<p>Sox9 and Oct4 are two important regulatory factors involved in mammalian development. Sox9, a member of the group E Sox transcription factor family, has a crucial role in the development of the genitourinary system, while Oct4, commonly known as octamer binding transcription factor 4, belongs to class V of the transcription family. The expression of these two proteins exhibits a dynamic pattern with regard to their expression sites and levels. The aim of this study was to investigate the role of de novo methylation in the regulation of the tissue- and site-specific expression of these proteins. The dynamics of the de novo methylation of 15 CpGs and six CpGs in Sox9 and Oct4 respectively, was studied with sodium bisulfite genomic DNA sequencing in mouse testis at different developmental stages. Consistent methylation of three CpGs was observed in adult ovary in which the expression of Sox9 was feeble, while the level of methylation in somatic tissue was greater in Oct4 compared to germinal tissue. The promoter-chromatin status of Sox9 was also studied with a chromatin immune-precipitation assay.</p>', 'date' => '2016-07-04', 'pmid' => 'http://www.ncbi.nlm.nih.gov/pubmed/27381637', 'doi' => '10.1590/1678-4685-GMB-2015-0172', 'modified' => '2016-07-11 12:31:08', 'created' => '2016-07-11 12:31:08', 'ProductsPublication' => array( 'id' => '1428', 'product_id' => '2596', 'publication_id' => '2979' ) ) $externalLink = ' <a href="http://www.ncbi.nlm.nih.gov/pubmed/27381637" target="_blank"><i class="fa fa-external-link"></i></a>'include - APP/View/Products/view.ctp, line 755 View::_evaluate() - CORE/Cake/View/View.php, line 971 View::_render() - CORE/Cake/View/View.php, line 933 View::render() - CORE/Cake/View/View.php, line 473 Controller::render() - CORE/Cake/Controller/Controller.php, line 963 ProductsController::slug() - APP/Controller/ProductsController.php, line 1052 ReflectionMethod::invokeArgs() - [internal], line ?? Controller::invokeAction() - CORE/Cake/Controller/Controller.php, line 491 Dispatcher::_invoke() - CORE/Cake/Routing/Dispatcher.php, line 193 Dispatcher::dispatch() - CORE/Cake/Routing/Dispatcher.php, line 167 [main] - APP/webroot/index.php, line 118
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