Diagenode

Auto hMeDIP kit x16 (monoclonal rat antibody)

Catalog Number
Format
Price
C02010033
(AF-Auto02-0016)
16 rxns
$510.00

This kit has been designed to perform Hydroxymethylated DNA Immunoprecipitation using an antibody against 5-hydroxymethylcytosine (5-hmC) on our Automated Systems. It includes control sequences (5-hmC, 5-mC and unmodified cytosine DNA standards) and control primer pairs (internal and external controls), to assess the efficiency of your immunoprecipitation.

  •  Applications
    DNA Methylation
    Complete solutions for DNA methylation studies Whether you are experienced or new to the field of DNA methylation, Diagenode has everything you need to make your assay as easy and convenient as possible while ensuring consistent data betwee... Read more
  •  Documents
    Auto hMeDIP kit MANUAL
    The Auto hMeDIP kits allow you to perform DNA hydroxymethylation analysis of your sample to...
    Download
    Exclusive Highly Specific Kits Antibodies for DNA HydroxyMethylation Studies POSTER
    5-hydroxymethylcytosine (5-hmC) has been recently discovered in mammalian DNA by two US groups (K...
    Download
    Premium RRBS spike-in controls manual MANUAL
    This document and files are to process the sequencing data from the spike-in controls included in...
    Download
  •  Publications

    How to properly cite this product in your work

    Diagenode strongly recommends using this: Auto hMeDIP kit x16 (monoclonal rat antibody) (Diagenode Cat# C02010033). Click here to copy to clipboard.

    Using our products in your publication? Let us know!

    Natural and induced loss of function mutations in SlMBP21 MADS-box gene led to jointless-2 phenotype in tomato
    Roldan M.V.G. et al.
    Abscission is the mechanism by which plants disconnect unfertilized flowers, ripe fruits, senescent or diseased organs from the plant. In tomato, pedicel abscission is an important agronomic factor that controls yield and post-harvest fruit quality. Two non-allelic mutations, jointless (j) and jointless-2 (j-2), con...

    Evaluating the Feasibility of DNA Methylation Analyses Using Long-Term Archived Brain Formalin-Fixed Paraffin-Embedded Samples
    Bak S.T. et al.
    We here characterize the usability of archival formalin-fixed paraffin-embedded (FFPE) brain tissue as a resource for genetic and DNA methylation analyses with potential relevance for brain-manifested diseases. We analyzed FFPE samples from The Brain Collection, Aarhus University Hospital Risskov, Denmark (AUBC), co...

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