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大肠杆菌单链结合蛋白(SSB)的内在无序连接子对于从单链DNA上释放至关重要。

The intrinsically disordered linker of E. coli SSB is critical for the release from single-stranded DNA.

作者信息

Tan Hui Yin, Wilczek Luke A, Pottinger Sasheen, Manosas Maria, Yu Cong, Nguyenduc Trong, Bianco Piero R

机构信息

Department of Microbiology and Immunology, Center for Single Molecule Biophysics, University at Buffalo, Buffalo, New York.

Departament de Física Fonamental, Facultat de Física, Universitat de Barcelona, Diagonal 647, 08028, Barcelona, Spain.

出版信息

Protein Sci. 2017 Apr;26(4):700-717. doi: 10.1002/pro.3115. Epub 2017 Mar 8.

Abstract

The Escherichia coli single stranded DNA binding protein (SSB) is crucial for DNA replication, recombination and repair. Within each process, it has two seemingly disparate roles: it stabilizes single-stranded DNA (ssDNA) intermediates generated during DNA processing and, forms complexes with a group of proteins known as the SSB-interactome. Key to both roles is the C-terminal, one-third of the protein, in particular the intrinsically disordered linker (IDL). Previously, they have shown using a series of linker deletion mutants that the IDL links both ssDNA and target protein binding by mediating interactions with the oligosaccharide/oligonucleotide binding fold in the target. In this study, they examine the role of the linker region in SSB function in a variety of DNA metabolic processes in vitro. Using the same linker mutants, the results show that in addition to association reactions (either DNA or protein), the IDL is critical for the release of SSB from DNA. This release can be under conditions of ssDNA competition or active displacement by a DNA helicase or recombinase. Consistent with their previous work these results indicate that SSB linker mutants are defective for SSB-SSB interactions, and when the IDL is removed a terminal SSB-DNA complex results. Formation of this complex inhibits downstream processing of DNA by helicases such as RecG or PriA as well as recombination, mediated by RecA. A model, based on the evidence herein, is presented to explain how the IDL acts in SSB function.

摘要

大肠杆菌单链DNA结合蛋白(SSB)对DNA复制、重组和修复至关重要。在每个过程中,它都有两个看似不同的作用:稳定DNA加工过程中产生的单链DNA(ssDNA)中间体,并与一组称为SSB相互作用组的蛋白质形成复合物。这两个作用的关键在于蛋白质的C端三分之一区域,特别是内在无序连接子(IDL)。此前,他们通过一系列连接子缺失突变体表明,IDL通过介导与靶标中寡糖/寡核苷酸结合结构域的相互作用,将ssDNA和靶标蛋白结合联系起来。在本研究中,他们在体外多种DNA代谢过程中研究了连接子区域在SSB功能中的作用。使用相同的连接子突变体,结果表明,除了缔合反应(无论是与DNA还是蛋白质)外,IDL对于SSB从DNA上的释放也至关重要。这种释放可以在ssDNA竞争的条件下发生,或者由DNA解旋酶或重组酶进行主动置换。与他们之前的工作一致,这些结果表明SSB连接子突变体在SSB-SSB相互作用方面存在缺陷,并且当去除IDL时会形成末端SSB-DNA复合物。这种复合物的形成会抑制诸如RecG或PriA等解旋酶对DNA的下游加工以及由RecA介导的重组。基于本文的证据,提出了一个模型来解释IDL在SSB功能中的作用机制。

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