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首页> 外文期刊>Biochemistry >Bound or Free: Interaction of the C?Terminal Domain of Escherichia coli Single-Stranded DNA-Binding Protein (SSB) with the Tetrameric Core of SSB
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Bound or Free: Interaction of the C?Terminal Domain of Escherichia coli Single-Stranded DNA-Binding Protein (SSB) with the Tetrameric Core of SSB

机译:绑定或自由:大肠杆菌单链DNA结合蛋白(SSB)的C末端域与SSB的四聚体核心的相互作用

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Single-stranded DNA (ssDNA)-binding protein (SSB) protects ssDNA from degradation and recruits other proteins for DNA replication and repair. Escherichia coli SSB is the prototypical eubacterial SSB in a family of tetrameric SSBs. It consists of a structurally well-defined ssDNA binding domain (OB-domain) and a disordered C-terminal domain (C-domain). The eight-residue C-terminal segment of SSB (C-peptide) mediates the binding of SSB to many different SSB-binding proteins. Previously published nuclear magnetic resonance (NMR) data of the monomeric state at pH 3.4 showed that the C-peptide binds to the OB-domain at a site that overlaps with the ssDNA binding site, but investigating the protein at neutral pH is difficult because of the high molecular mass and limited solubility of the tetramer. Here we show that the C-domain is highly mobile in the SSB tetramer at neutral pH and that binding of the C-peptide to the OB-domain is so weak that most of the C-peptides are unbound even in the absence of ssDNA. We address the problem of determining intramolecular binding affinities in the situation of fast exchange between two states, one of which cannot be observed by NMR and cannot be fully populated. The results were confirmed by electron paramagnetic resonance spectroscopy and microscale thermophoresis. The C-peptide?OB-domain interaction is shown to be driven primarily by electrostatic interactions, so that binding of 1 equiv of (dT)35 releases practically all C-peptides from the OB-domain tetramer. The interaction is much more sensitive to NaCl than to potassium glutamate, which is the usual osmolyte in E. coli. As the Cpeptide is predominantly in the unbound state irrespective of the presence of ssDNA, long-range electrostatic effects from the Cpeptide may contribute more to regulating the activity of SSB than any engagement of the C-peptide by the OB-domain.
机译:单链DNA(ssDNA)结合蛋白(SSB)保护ssDNA免受降解,并募集其他蛋白质进行DNA复制和修复。大肠杆菌SSB是四聚SSB家族中的典型真细菌SSB。它由结构上明确定义的ssDNA结合域(OB域)和无序的C末端域(C域)组成。 SSB的八个残基C末端片段(C肽)介导SSB与许多不同的SSB结合蛋白的结合。先前发表的pH 3.4单体状态的核磁共振(NMR)数据显示,C肽在与ssDNA结合位点重叠的位点结合到OB结构域,但是由于存在以下原因,很难在中性pH下研究蛋白质四聚体的高分子量和有限的溶解度。在这里,我们显示C结构域在中性pH下在SSB四聚体中具有很高的移动性,并且C肽与OB结构域的结合非常弱,即使没有ssDNA,大多数C肽也未结合。我们解决了在两种状态之间快速交换的情况下确定分子内结合亲和力的问题,其中一种状态无法通过NMR观察到并且无法完全填充。通过电子顺磁共振波谱和微尺度热电泳证实了该结果。 C-肽→OB-结构域的相互作用主要由静电相互作用驱动,因此,当量为1当量的(dT)35结合时,实际上从OB-域四聚体中释放出所有C-肽。这种相互作用对NaCl的敏感性比对谷氨酸钾(对大肠杆菌中常见的渗透液)更敏感。由于C肽主要处于未结合状态,而与ssDNA的存在无关,因此C肽的远距离静电效应可能比OB结构域对C肽的任何参与都更有助于调节SSB的活性。

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