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Gene Bio Systems

MSH2 antibody , Cat. # FNab05372

MSH2 antibody , Cat. # FNab05372

SKU:FNab05372

Regular price $537.00 USD
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Size:100ug

Purification:Protein A+G purification

Form:liquid

Purity:?95% as determined by SDS-PAGE

Host:Mouse

Clonality:monoclonal

Clone ID:7C1

Isotype:IgG2a

Storage:PBS with 0.02% sodium azide and 50% glycerol pH 7.3,-20? for 12 months(Avoid repeated freeze / thaw cycles.)

Background:Component of the post-replicative DNA mismatch repair system(MMR). Forms two different heterodimers: MutS alpha(MSH2-MSH6 heterodimer) and MutS beta(MSH2-MSH3 heterodimer) which binds to DNA mismatches thereby initiating DNA repair. When bound, heterodimers bend the DNA helix and shields approximately 20 base pairs. MutS alpha recognizes single base mismatches and dinucleotide insertion-deletion loops(IDL) in the DNA. MutS beta recognizes larger insertion-deletion loops up to 13 nucleotides long. After mismatch binding, MutS alpha or beta forms a ternary complex with the MutL alpha heterodimer, which is thought to be responsible for directing the downstream MMR events, including strand discrimination, excision, and resynthesis. ATP binding and hydrolysis play a pivotal role in mismatch repair functions. The ATPase activity associated with MutS alpha regulates binding similar to a molecular switch: mismatched DNA provokes ADP-->ATP exchange, resulting in a discernible conformational transition that converts MutS alpha into a sliding clamp capable of hydrolysis-independent diffusion along the DNA backbone. This transition is crucial for mismatch repair. MutS alpha may also play a role in DNA homologous recombination repair. In melanocytes may modulate both UV-B-induced cell cycle regulation and apoptosis.

Immunogen:mutS homolog 2, colon cancer, nonpolyposis type 1

Synonyms:COCA1, FCC1, hMSH2, HNPCC, HNPCC1, LCFS2, MSH2, MutS protein homolog 2

Observed MW:105 kDa

Uniprot ID:P43246

Reactivity:Human

Tested Application:ELISA, WB, IHC

Recommended dilution:WB: 1:500-1:2000; IHC: 1:20-1:200

Gene ID:4436

Research Area:Epigenetics, Metabolism, Cancer, Immunology, Developmental biology

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