Jackson Doba, Dhar Kajari, Wahl James K, Wold Marc S, Borgstahl Gloria E O
Department of Chemistry, University of Toledo, 2801 West Bancroft Street, OH 43606-3390, USA.
J Mol Biol. 2002 Aug 2;321(1):133-48. doi: 10.1016/s0022-2836(02)00541-7.
The eukaryotic single-stranded DNA-binding protein, replication protein A (RPA), is essential for DNA replication, and plays important roles in DNA repair and DNA recombination. Rad52 and RPA, along with other members of the Rad52 epistasis group of genes, repair double-stranded DNA breaks (DSBs). Two repair pathways involve RPA and Rad52, homologous recombination and single-strand annealing. Two binding sites for Rad52 have been identified on RPA. They include the previously identified C-terminal domain (CTD) of RPA32 (residues 224-271) and the newly identified domain containing residues 169-326 of RPA70. A region on Rad52, which includes residues 218-303, binds RPA70 as well as RPA32. The N-terminal region of RPA32 does not appear to play a role in the formation of the RPA:Rad52 complex. It appears that the RPA32CTD can substitute for RPA70 in binding Rad52. Sequence homology between RPA32 and RPA70 was used to identify a putative Rad52-binding site on RPA70 that is located near DNA-binding domains A and B. Rad52 binding to RPA increases ssDNA affinity significantly. Mutations in DBD-D on RPA32 show that this domain is primarily responsible for the ssDNA binding enhancement. RPA binding to Rad52 inhibits the higher-order self-association of Rad52 rings. Implications for these results for the "hand-off" mechanism between protein-protein partners, including Rad51, in homologous recombination and single-strand annealing are discussed.
真核生物单链DNA结合蛋白,即复制蛋白A(RPA),对DNA复制至关重要,并且在DNA修复和DNA重组中发挥重要作用。Rad52和RPA以及Rad52上位性基因家族的其他成员可修复双链DNA断裂(DSB)。涉及RPA和Rad52的两种修复途径为同源重组和单链退火。已在RPA上鉴定出两个Rad52结合位点。它们包括先前鉴定出的RPA32的C末端结构域(CTD,残基224 - 271)以及新鉴定出的包含RPA70残基169 - 326的结构域。Rad52上包含残基218 - 303的区域可结合RPA70以及RPA32。RPA32的N末端区域似乎在RPA:Rad52复合物的形成中不起作用。看来RPA32CTD在结合Rad52方面可以替代RPA70。利用RPA32和RPA70之间的序列同源性,在RPA70上靠近DNA结合结构域A和B的位置鉴定出一个假定的Rad52结合位点。Rad52与RPA的结合显著增加了单链DNA亲和力。RPA32上DBD - D的突变表明该结构域主要负责单链DNA结合增强。RPA与Rad52的结合抑制了Rad52环的高阶自缔合。讨论了这些结果对同源重组和单链退火中包括Rad51在内的蛋白质 - 蛋白质伙伴之间“交接”机制的影响。