RevMab

anti-Acetyl-Histone H2A.X (Lys5), Rabbit Monoclonal (RM445)

CHF 251.00
In stock
REV-31-1336-00-C02525 µgCHF 251.00
REV-31-1336-00-C100100 µgCHF 559.00
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Product Details
Synonyms H2A.X K5ac
Product Type Recombinant Antibody
Properties
Clone RM445
Isotype Rabbit IgG
Source/Host Rabbit
Immunogen/Antigen A peptide corresponding to acetyl-Histone H2A.X (Lys5).
Application

Western Blot: 0.04µg/ml - 0.2µg/ml
Multiplex: 0.2µg/ml - 1µg/ml

Crossreactivity Human
All Vertebrates
Specificity

This antibody reacts to Histone H2A.X acetylated at Lysine 5 (K5ac). It shows no cross-reactivity with non-modified Lysine 5 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 1mg/ml
Formulation Liquid. 50% Glycerol/PBS with 1% BSA and 0.09% sodium azide.
Isotype Negative Control

Rabbit IgG

Other Product Data

Click here for Original Manufacturer Product Datasheet
Our product description may differ slightly from the original manufacturers 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
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. 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.

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