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RevMab
anti-Acetyl-Histone H2A.Z (Lys4), Rabbit Monoclonal (RM221)
Product Details | |
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Synonyms | H2A.Z K4ac |
Product Type | Recombinant Antibody |
Properties | |
Clone | RM221 |
Isotype | Rabbit IgG |
Source/Host | Rabbit |
Immunogen/Antigen | An acetyl-peptide corresponding to Acetyl-Histone H2A.Z (Lys4). |
Application |
Western Blot: 0.5 µg/ml-2 µg/ml |
Crossreactivity | All Vertebrates |
Specificity |
This antibody reacts to Histone H2A.Z acetylated at Lysine 4 (K4ac). No cross reactivity with non-modified Lysine 4 or other acetylated Lysines in histone H2A. |
Purity | Protein A purified. |
Purity Detail | Protein A affinity purified from an animal origin-free culture supernatant. |
Concentration | 1 mg/ml |
Formulation | Liquid. 50% Glycerol/PBS with 1% BSA and 0.09% sodium azide. |
Isotype Negative Control | |
Other Product Data |
Click here for Original Manufacturer Product Datasheet |
Accession Number | P0C0S5 |
Declaration | Manufactured by RevMab Biosciences. |
Shipping and Handling | |
Shipping | BLUE ICE |
Long Term Storage | -20°C |
Handling Advice | Avoid freeze/thaw cycles. |
Use/Stability | Stable for at least 1 year after receipt when stored at -20°C. |
Documents | |
MSDS | Inquire |
Product Specification Sheet | |
Datasheet | Download PDF |
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. H2A is considered a core histone, along with H2B, H3 and H4. Core formation first occurs through the interaction of two H2A molecules. Then, H2A forms a dimer with H2B; the core molecule is complete when H3-H4 also attaches to form a tetramer. Histone H2A is composed of non-allelic variants, including H2A.1, H2A.2, H2A.X, and H2A.Z. 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.