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单链结合蛋白(SSB)在大肠杆菌RecQ DNA解旋酶功能中起核心作用。

A central role for SSB in Escherichia coli RecQ DNA helicase function.

作者信息

Shereda Robert D, Bernstein Douglas A, Keck James L

机构信息

Department of Biomolecular Chemistry, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin 53706-1532, USA.

出版信息

J Biol Chem. 2007 Jun 29;282(26):19247-58. doi: 10.1074/jbc.M608011200. Epub 2007 May 3.

DOI:10.1074/jbc.M608011200
PMID:17483090
Abstract

RecQ DNA helicases are critical components of DNA replication, recombination, and repair machinery in all eukaryotes and bacteria. Eukaryotic RecQ helicases are known to associate with numerous genome maintenance proteins that modulate their cellular functions, but there is little information regarding protein complexes involving the prototypical bacterial RecQ proteins. Here we use an affinity purification scheme to identify three heterologous proteins that associate with Escherichia coli RecQ: SSB (single-stranded DNA-binding protein), exonuclease I, and RecJ exonuclease. The RecQ-SSB interaction is direct and is mediated by the RecQ winged helix subdomain and the C terminus of SSB. Interaction with SSB has important functional consequences for RecQ. SSB stimulates RecQ-mediated DNA unwinding, whereas deletion of the C-terminal RecQ-binding site from SSB produces a variant that blocks RecQ DNA binding and unwinding activities, suggesting that RecQ recognizes both the SSB C terminus and DNA in SSB.DNA nucleoprotein complexes. These findings, together with the noted interactions between human RecQ proteins and Replication Protein A, identify SSB as a broadly conserved RecQ-binding protein. These results also provide a simple model that explains RecQ integration into genome maintenance processes in E. coli through its association with SSB.

摘要

RecQ DNA解旋酶是所有真核生物和细菌中DNA复制、重组及修复机制的关键组成部分。已知真核生物的RecQ解旋酶与众多调节其细胞功能的基因组维持蛋白相关联,但关于涉及典型细菌RecQ蛋白的蛋白质复合物的信息却很少。在此,我们采用亲和纯化方案来鉴定与大肠杆菌RecQ相关联的三种异源蛋白:单链DNA结合蛋白(SSB)、核酸外切酶I和RecJ核酸外切酶。RecQ与SSB的相互作用是直接的,由RecQ的翼状螺旋亚结构域和SSB的C末端介导。与SSB的相互作用对RecQ具有重要的功能影响。SSB刺激RecQ介导的DNA解旋,而从SSB中缺失C末端RecQ结合位点会产生一种变体,该变体阻断RecQ的DNA结合和解旋活性,这表明RecQ识别SSB中的SSB C末端和DNA。DNA核蛋白复合物。这些发现,连同人类RecQ蛋白与复制蛋白A之间的显著相互作用,确定SSB为一种广泛保守的RecQ结合蛋白。这些结果还提供了一个简单的模型,解释了RecQ如何通过与SSB的关联而融入大肠杆菌的基因组维持过程。

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