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人类RAD52噬菌体同源物的功能和结构基础。

Functional and structural basis for a bacteriophage homolog of human RAD52.

作者信息

Ploquin Mickaël, Bransi Ali, Paquet Eric R, Stasiak Alicja Z, Stasiak Andrzej, Yu Xiong, Cieslinska Anna M, Egelman Edward H, Moineau Sylvain, Masson Jean-Yves

机构信息

Genome Stability Laboratory, Laval University Cancer Research Center, Hôtel-Dieu de Québec, 9 McMahon, Québec City G1R 2J6, Canada.

出版信息

Curr Biol. 2008 Aug 5;18(15):1142-6. doi: 10.1016/j.cub.2008.06.071. Epub 2008 Jul 24.

Abstract

In eukaryotes, homologous recombination proteins such as RAD51 and RAD52 play crucial roles in DNA repair and genome stability. Human RAD52 is a member of a large single-strand annealing protein (SSAP) family [1] and stimulates Rad51-dependent recombination [2, 3]. In prokaryotes and phages, it has been difficult to establish the presence of RAD52 homologs with conserved sequences. Putative SSAPs were recently found in several phages that infect strains of Lactococcus lactis[4]. One of these SSAPs was identified as Sak and was found in the virulent L. lactis phage ul36, which belongs to the Siphoviridae family [4, 5]. In this study, we show that Sak is homologous to the N terminus of human RAD52. Purified Sak binds single-stranded DNA (ssDNA) preferentially over double-stranded DNA (dsDNA) and promotes the renaturation of long complementary ssDNAs. Sak also binds RecA and stimulates homologous recombination reactions. Mutations shown to modulate RAD52 DNA binding [6] affect Sak similarly. Remarkably, electron-microscopic reconstruction of Sak reveals an undecameric (11) subunit ring, similar to the crystal structure of the N-terminal fragment of human RAD52 [7, 8]. For the first time, we propose a viral homolog of RAD52 at the amino acid, phylogenic, functional, and structural levels.

摘要

在真核生物中,诸如RAD51和RAD52等同源重组蛋白在DNA修复和基因组稳定性中发挥着关键作用。人类RAD52是一个大型单链退火蛋白(SSAP)家族的成员[1],并能刺激Rad51依赖性重组[2,3]。在原核生物和噬菌体中,很难确定存在具有保守序列的RAD52同源物。最近在几种感染乳酸乳球菌菌株的噬菌体中发现了推定的SSAP[4]。其中一种SSAP被鉴定为Sak,存在于毒性乳酸乳球菌噬菌体ul36中,该噬菌体属于长尾噬菌体科[4,5]。在本研究中,我们表明Sak与人类RAD52的N末端同源。纯化的Sak优先结合单链DNA(ssDNA)而非双链DNA(dsDNA),并促进长互补ssDNA的复性。Sak还能结合RecA并刺激同源重组反应。已证明可调节RAD52 DNA结合的突变[6]对Sak有类似影响。值得注意的是,Sak的电子显微镜重建显示出一个十一聚体(11)亚基环,类似于人类RAD52 N末端片段的晶体结构[7,8]。我们首次在氨基酸、系统发育、功能和结构水平上提出了RAD52的病毒同源物。

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本文引用的文献

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