O'Regan P, Wilson C, Townsend S, Thacker J
Radiation and Genome Stability Unit, Medical Research Council, Harwell, Oxfordshire OX11 0RD, United Kingdom.
J Biol Chem. 2001 Jun 22;276(25):22148-53. doi: 10.1074/jbc.M102396200. Epub 2001 Apr 11.
The human XRCC2 gene was recently identified by its ability to complement a hamster cell line, irs1, which is sensitive to DNA-damaging agents and shows genetic instability. The XRCC2 protein is highly conserved in mammalian species and has structural features, including a putative ATP-binding domain (P-loop), consistent with membership of the RecA/RAD51 family of recombination-repair proteins. We show that a hybrid XRCC2-green fluorescent protein, which was found to be functional by complementation, localizes to the nucleus. We have established a functional link between XRCC2 and RAD51 by looking at damage-dependent RAD51 focus formation in the irs1 cell line. Little or no formation of RAD51 foci occurred in irs1. This effect was specific to the loss of XRCC2 because transfection of the gene into irs1 restored normal levels of focus formation. Surprisingly, XRCC2 genes carrying site-specific mutations in P-loop residues were found to be able to complement the XRCC2-deficient irs1 line for a number of different end points. We conclude that XRCC2 is important in the early stages of homologous recombination in mammalian cells to facilitate RAD51-dependent recombination repair but that it does not make use of ATP binding to promote this function.
人类XRCC2基因最近是通过其对仓鼠细胞系irs1的互补能力而被鉴定出来的,irs1对DNA损伤剂敏感且表现出遗传不稳定性。XRCC2蛋白在哺乳动物物种中高度保守,具有包括推定的ATP结合结构域(P环)在内的结构特征,这与重组修复蛋白的RecA/RAD51家族成员一致。我们发现,通过互补作用具有功能的杂交XRCC2-绿色荧光蛋白定位于细胞核。通过观察irs1细胞系中损伤依赖性RAD51焦点形成,我们建立了XRCC2与RAD51之间的功能联系。在irs1中很少或没有形成RAD51焦点。这种效应是XRCC2缺失所特有的,因为将该基因转染到irs1中可恢复正常的焦点形成水平。令人惊讶的是,发现在P环残基中携带位点特异性突变的XRCC2基因能够在许多不同终点上互补XRCC2缺陷的irs1细胞系。我们得出结论,XRCC2在哺乳动物细胞同源重组的早期阶段很重要,以促进RAD51依赖性重组修复,但它并不利用ATP结合来促进这一功能。