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Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody (CAB2421)

SKU:
CAB2421
Product Type:
Antibody
Reactivity:
Human
Mouse
Rat
Host Species:
Rabbit
Isotype:
IgG
Research Area:
Epigenetics and Nuclear Signaling
  • Epigenetics and Nuclear Signaling Antibodies 3 Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody CAB2421
  • Epigenetics and Nuclear Signaling Antibodies 3 Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody CAB2421
  • Epigenetics and Nuclear Signaling Antibodies 3 Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody CAB2421
  • Epigenetics and Nuclear Signaling Antibodies 3 Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody CAB2421
  • Epigenetics and Nuclear Signaling Antibodies 3 Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody CAB2421
$167 - $503
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Description

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Anti-Asymmetric DiMethyl-Histone H3-R17 Antibody (CAB2421)

The Asymmetric Dimethyl Histone H3 R17 Polyclonal Antibody (CAB2421) is a valuable tool for researchers studying epigenetic modifications in histone proteins. This antibody, raised in rabbits, specifically targets the asymmetric dimethylation of histone H3 at arginine 17, a modification associated with gene activation and transcriptional regulation.Validated for use in techniques such as Western blotting, immunoprecipitation, and immunofluorescence, this antibody allows for the detection and analysis of asymmetric dimethyl histone H3 R17 in a variety of cell types and tissues. Its high reactivity with human samples makes it an ideal choice for researchers investigating the role of histone modifications in cancer, development, and other biological processes.

Histone modifications, including asymmetric dimethylation of histone H3 R17, play a crucial role in the regulation of gene expression and chromatin structure. By studying these modifications, researchers can gain insight into the mechanisms underlying various diseases, as well as potential targets for therapeutic intervention. The Asymmetric Dimethyl Histone H3 R17 Polyclonal Antibody provides a reliable tool for exploring the complex world of epigenetics and histone biology.