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anti-Acetyl-Histone H2B (Lys11), Rabbit Monoclonal (RM456)

anti-Acetyl-Histone H2B (Lys11), Rabbit Monoclonal (RM456)

Research Use Only
REV-31-1348-00
RevMAb Biosciences
ApplicationsWestern Blot, ELISA, Other Application
Product group Antibodies
ReactivityHuman, Vertebrate
TargetH2BC3
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Overview

  • Supplier
    RevMAb Biosciences
  • Product Name
    anti-Acetyl-Histone H2B (Lys11), Rabbit Monoclonal (RM456)
  • Delivery Days Customer
    5
  • Antibody Specificity
    This antibody reacts to Histone H2B acetylated at lysine 11 (K11ac). No cross-reactivity with other acetylated lysines in histones has been shown.
  • Applications
    Western Blot, ELISA, Other Application
  • Certification
    Research Use Only
  • Clonality
    Monoclonal
  • Clone ID
    RM456
  • Concentration
    1 mg/ml
  • Formulation
    Liquid
  • Gene ID3018
  • Target name
    H2BC3
  • Target description
    H2B clustered histone 3
  • Target synonyms
    H2B histone family, member F; H2B.1; H2B/f; H2BFF; HIST1H2BB; histone 1, H2bb; histone cluster 1 H2B family member b; histone cluster 1, H2bb; histone H2B type 1-B; histone H2B.1; histone H2B.f
  • Host
    Rabbit
  • Isotype
    IgG
  • Protein IDP33778
  • Protein Name
    Histone H2B type 1-B
  • Scientific Description
    Histones are proteins that package DNA into nucleosomes. Histones are responsible for maintaining the shape and structure of a nucleosome. One chromatin molecule is composed of at least one of each core histones per 100 base pairs of DNA. There are five families of histones known to date; these histones are termed H1/H5, H2A, H2B, H3, and H4. H2B is considered a core histone, along with H2A, H3 and H4. H2A packages DNA molecules into chromatin and has been correlated with DNA modification and epigenetics. H2A plays a major role in determining the overall structure of chromatin and regulates gene expression. Protein modification on histone H2A exist and can sometimes result in a change in function. Different H2A variants were exploited to have different functions, genetic sequences and modifications. Histone H2B is a structural protein that helps organize eukaryotic DNA. It plays an important role in the biology of the nucleus where it is involved in the packaging and maintaining of chromosomes, regulation of transcription and replication and repair of DNA. Histone H2B helps regulate chromatin structure and function through post-translational modifications and specialized histone variants. Hyperacetylation of histone tails helps DNA-binding proteins access chromatin by weakening histone-DNA and nucleosome-nucleosome interactions. Acetylation of a specific lysine residue binds to bromine-containing domains of certain transcription and chromatin regulatory proteins. This docking facilitates the recruitment of these proteins to the correct region of the chromosome. Ubiquitinated histone H2B is often found in regions of active transcription and stimulates transcriptional elongation and sets the stage for further modifications that regulate multiple elements of transcription. In histone H2B, a phosphorylated serine or threonine residue activates transcription. - Recombinant Antibody. This antibody reacts to Histone H2B acetylated at lysine 11 (K11ac). No cross-reactivity with other acetylated lysines in histones has been shown. Applications: ELISA, WB, Multiplex. Clone: RM456. Isotype: Rabbit IgG. Formulation: Liquid. 50% Glycerol/PBS with 1% BSA and 0.09% sodium azide. Histones are proteins that package DNA into nucleosomes. Histones are responsible for maintaining the shape and structure of a nucleosome. One chromatin molecule is composed of at least one of each core histones per 100 base pairs of DNA. There are five families of histones known to date; these histones are termed H1/H5, H2A, H2B, H3, and H4. H2B is considered a core histone, along with H2A, H3 and H4. H2A packages DNA molecules into chromatin and has been correlated with DNA modification and epigenetics. H2A plays a major role in determining the overall structure of chromatin and regulates gene expression. Protein modification on histone H2A exist and can sometimes result in a change in function. Different H2A variants were exploited to have different functions, genetic sequences and modifications. Histone H2B is a structural protein that helps organize eukaryotic DNA. It plays an important role in the biology of the nucleus where it is involved in the packaging and maintaining of chromosomes, regulation of transcription and replication and repair of DNA. Histone H2B helps regulate chromatin structure and function through post-translational modifications and specialized histone variants. Hyperacetylation of histone tails helps DNA-binding proteins access chromatin by weakening histone-DNA and nucleosome-nucleosome interactions. Acetylation of a specific lysine residue binds to bromine-containing domains of certain transcription and chromatin regulatory proteins. This docking facilitates the recruitment of these proteins to the correct region of the chromosome. Ubiquitinated histone H2B is often found in regions of active transcription and stimulates transcriptional elongation and sets the stage for further modifications that regulate multiple elements of transcription. In histone H2B, a phosphorylated serine or threonine residue activates transcription.
  • Reactivity
    Human, Vertebrate
  • Storage Instruction
    -20°C,2°C to 8°C
  • UNSPSC
    12352203

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