Min Jaewon, Park Pil-gu, Ko Eunkyong, Choi Eunhee, Lee Hyunsook
School of Biological Sciences and Research Center for Functional Cellulomics, College of Natural Sciences, Seoul National University, San 56-1, Shillin-Dong, Gwanak-Ku, Seoul 151-742, South Korea.
Biochem Biophys Res Commun. 2007 Nov 3;362(4):958-64. doi: 10.1016/j.bbrc.2007.08.083. Epub 2007 Aug 27.
BRCA2 is involved in double-stranded DNA break repair by binding and regulating Rad51-mediated homologous recombination. Insights as to how BRCA2 regulates Rad51-mediated DNA repair arose from in vitro biochemical studies on fragments of BRCA2. However, the large 400-kDa BRCA2 protein has hampered our ability to understand the entire process by which full-length BRCA2 regulates Rad51. Here, we show that CeBRC-2, which is only one tenth the size of mammalian BRCA2, complemented BRCA2-deficiency in Rad51 regulation. CeBRC-2 was able to bind to mammalian Rad51 (mRad51) and form distinct nuclear foci when they interacted. In our bimolecular fluorescence complementation analysis (BiFC), we show that the strength of the interaction between CeBRC-2 and mRad51 increased markedly after DNA damage. The BRC motif of CeBRC-2 was responsible for binding mRad51, but without the OB fold, the complex was unable to target damaged DNA. When CeBRC-2 was introduced into BRCA2-deficient cells, it restored Rad51 foci after DNA damage. Our study suggests a mode of action for BRCA2 with regard to DNA repair.
BRCA2通过结合并调节Rad51介导的同源重组参与双链DNA断裂修复。关于BRCA2如何调节Rad51介导的DNA修复的见解源于对BRCA2片段的体外生化研究。然而,400 kDa的大型BRCA2蛋白阻碍了我们对全长BRCA2调节Rad51的整个过程的理解。在这里,我们表明,大小仅为哺乳动物BRCA2十分之一的CeBRC-2在Rad51调节中弥补了BRCA2的缺陷。CeBRC-2能够与哺乳动物Rad51(mRad51)结合,并在它们相互作用时形成独特的核灶。在我们的双分子荧光互补分析(BiFC)中,我们表明DNA损伤后CeBRC-2与mRad51之间的相互作用强度显著增加。CeBRC-2的BRC基序负责结合mRad51,但没有OB折叠,该复合物就无法靶向受损DNA。当将CeBRC-2引入BRCA2缺陷细胞时,它在DNA损伤后恢复了Rad51灶。我们的研究提出了BRCA2在DNA修复方面的一种作用模式。