Histone H3K56ac Polyclonal Antibody ChIP Grade


  • Specification
  • Target Information
  • Related Products
Cat.No.:  EAb-0542
Product Name:  Histone H3K56ac Polyclonal Antibody ChIP Grade
Description:  The rabbit-derived antibody is purified with protein A-conjugated agarose followed by acetylated histone H3 (Lys56) peptide affinity chromatography. It specifically recognizes histone H3 with acetylation at Lys56.
Antibody Type:  Polyclonal
Immunogen:  Synthetic acetyl peptide corresponding to residues surrounding Lys56 of human histone H3
Host:  Rabbit
Isotype:  IgG
Specificity:  H3 with acetylation at Lys56
Purification:  Antibodies are purified by protein A-conjugated agarose followed by acetylated histone H3 (Lys56) peptide affinity chromatography.
Appearance:  Liquid
Applications:  ChIP, IP
Recommended Dilutions/Conditions:  IP: 1:50; ChIP: 1:50
Recommended dilutions/conditions may not be available for all applications. Specific conditions for reactivity should be optimized by the end user.
Species Reactivity:  Eukaryotes
Storage:  -20°C
Storage Buffer:  PBS with 50% glycerol and 0.01% sodium azide.
Warning:  For Research Use Only! Not For Use in Humans.
Scientific Background:  The ε-amino lysine acetylation of proteins is an important reversible modification controlling protein activity.The amino-terminal tails of core histones undergo lysine acetylationin multiple sites, termed as “histone code”.Lysine acetylation in core histone soccurs in response to various stimuli and plays vital roles in the regulation of many cellular processes including chromatin dynamics, DNA transcription, cell cycle progression, apoptosis, differentiation, and nuclear import.. In most species, histone H2A is primarily acetylated at Lys5, 9, 15, and 36; H2B is primarily acetylated at Lys5, 12, 15, 16, and 20. Histone H3 is primarily acetylated at Lys4, 9, 14, 18, 23, 27, 56, and 79. Histone H4 is primarily acetylated at Lys5, 8, 12, 16, and 20. Morethan 20 histone acetyltransferases (HATs) and 18 histone deacetylases (HDACs) have been identified to date, while the mechanistic details of substrateselection and site specificity of these enzymes remain unclear. The regulation of histonelysine acetylation status is impaired in the pathologies of cancerand other diseases and therefore, enzymes regulating histone lysine acetylationhave become promising targets for anti-cancer drugs.

Online Inquiry

For Research Use Only. Not for use in diagnostic or therapeutic procedures.

USA

Enter your email here to subscribe.

Follow us on

Easy access to products and services you need from our library via powerful searching tools

Copyright © Creative BioMart. All Rights Reserved.