Histone H3K27me2 Polyclonal Antibody


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Cat.No.:  EAb-0549
Product Name:  Histone H3K27me2 Polyclonal Antibody
Product Overview:  Anti-Histone H3 K27 me2 (RABBBIT) Antibody
Antibody Type:  Polyclonal
Immunogen:  Produced in rabbits by repeated immunizations with a synthetic peptide of human histone H3, dimethylated at lysine 27.
Host:  Rabbit
Isotype:  IgG
Purification:  Purified by affinity purification.
Appearance:  Liquid
Formulation:  0.01 M Sodium Phosphate, 0.25 M Sodium Chloride, pH 7.2
Applications:  Chromatin Immunoprecipitation, Dot Blotting, ELISA, Immunofluorescence and Western Blots
Recommended Dilutions/Conditions:  ELISA: 1:1,000 ChIP: 2 μg/ChIP; IF Microscopy: 1:500; Western Blot: 1:1,000; Dot Blot: 1:50,000
Recommended dilutions/conditions may not be available for all applications. Specific conditions for reactivity should be optimized by the end user.
Cross Reactivity:  Human
Shipping:  Dry Ice
Storage:  -20°C
Storage Buffer:  0.05% (w/v) Sodium Azide and 0.05% ProClin 300
Warning:  For Research Use Only! Not For Use in Humans.
Accession:  UniProtKB - P84243; GeneID - 3020; NCBI - NP_002098
Alternative Name:  Histone H3.1, Histone H3/a, Histone H3/b, Histone H3/c, Histone H3/d, Histone H3/e, Histone H3/f, Histone H3/g, Histone H3/h, Histone H3/i, Histone H3/j, Histone H3/k, Histone H3/l
Scientific Background:  Histones are the main constituents of the protein part of chromosomes of eukaryotic cells. They are rich in the amino acids arginine and lysine and have been greatly conserved during evolution. Histones pack the DNA into tight masses of chromatin. Two core histones of each class H2A, H2B, H3 and H4 assemble and are wrapped by 146 base pairs of DNA to form one octameric nucleosome. Histone tails undergo numerous post-translational modifications, which either directly or indirectly alter chromatin structure to facilitate transcriptional activation or repression or other nuclear processes. In addition to the genetic code, combinations of the different histone modifications reveal the so-called “histone code”. Histone methylation and demethylation is dynamically regulated by respectively histone methyl transferases and histone demethylases. Levels of H3K27 dimethylation are higher in silent genes than in active genes suggesting that this histone modification is associated with transcriptional repression.

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

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