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Control of BRCA2 cellular and clinical functions by a nuclear partner, PALB2.

Molecular cell (2006-06-24)
Bing Xia, Qing Sheng, Koji Nakanishi, Akihiro Ohashi, Jianmin Wu, Nicole Christ, Xinggang Liu, Maria Jasin, Fergus J Couch, David M Livingston
ABSTRACT

BRCA2 mutations predispose carriers to breast and ovarian cancer and can also cause other cancers and Fanconi anemia. BRCA2 acts as a "caretaker" of genome integrity by enabling homologous recombination (HR)-based, error-free DNA double-strand break repair (DSBR) and intra-S phase DNA damage checkpoint control. Described here is the identification of PALB2, a BRCA2 binding protein. PALB2 colocalizes with BRCA2 in nuclear foci, promotes its localization and stability in key nuclear structures (e.g., chromatin and nuclear matrix), and enables its recombinational repair and checkpoint functions. In addition, multiple, germline BRCA2 missense mutations identified in breast cancer patients but of heretofore unknown biological/clinical consequence appear to disrupt PALB2 binding and disable BRCA2 HR/DSBR function. Thus, PALB2 licenses key cellular biochemical properties of BRCA2 and ensures its tumor suppression function.

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Sigma-Aldrich
Anticorpo anti fosfo-istone H2A.X (Ser139), colone JBW301, clone JBW301, Upstate®, from mouse
Sigma-Aldrich
Anti-BRCA2 (Ab-1) Mouse mAb (2B), liquid, clone 2B, Calbiochem®
Sigma-Aldrich
Anticorpo anti-BRCA1, serum, Upstate®
Sigma-Aldrich
Anti-BRCA1 (Ab-4) Mouse mAb (SD118), liquid, clone SD118, Calbiochem®