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Structural and functional analysis of the MutS C-terminal tetramerization domain

机译:MutS C末端四聚结构域的结构和功能分析

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摘要

The Escherichia coli DNA mismatch repair (MMR) protein MutS is essential for the correction of DNA replication errors. In vitro, MutS exists in a dimer/tetramer equilibrium that is converted into a monomer/dimer equilibrium upon deletion of the C-terminal 53 amino acids. In vivo and in vitro data have shown that this C-terminal domain (CTD, residues 801–853) is critical for tetramerization and the function of MutS in MMR and anti-recombination. We report the expression, purification and analysis of the E.coli MutS-CTD. Secondary structure prediction and circular dichroism suggest that the CTD is folded, with an α-helical content of 30%. Based on sedimentation equilibrium and velocity analyses, MutS-CTD forms a tetramer of asymmetric shape. A single point mutation (D835R) abolishes tetramerization but not dimerization of both MutS-CTD and full-length MutS. Interestingly, the in vivo and in vitro MMR activity of MutSCF/D835R is diminished to a similar extent as a truncated MutS variant (MutS800, residues 1–800), which lacks the CTD. Moreover, the dimer-forming MutSCF/D835R has comparable DNA binding affinity with the tetramer-forming MutS, but is impaired in mismatch-dependent activation of MutH. Our data support the hypothesis that tetramerization of MutS is important but not essential for MutS function in MMR.
机译:大肠杆菌DNA错配修复(MMR)蛋白MutS对于纠正DNA复制错误至关重要。在体外,MutS以二聚体/四聚体平衡存在,在删除C端53个氨基酸后会转化为单体/二聚体平衡。体内和体外数据表明,该C末端结构域(CTD,残基801-853)对于四聚化以及MutS在MMR和抗重组中的功能至关重要。我们报告了大肠杆菌MutS-CTD的表达,纯化和分析。二级结构预测和圆二色性表明CTD是折叠的,α螺旋含量为30%。根据沉降平衡和速度分析,MutS-CTD形成不对称形状的四聚体。单点突变(D835R)消除了MutS-CTD和全长MutS的四聚化,但没有二聚化。有趣的是,MutS CF / D835R 的体内和体外MMR活性与缺少CTD的截短的MutS变体(MutS800,残基1–800)相似,程度有所降低。此外,形成二聚体的MutS CF / D835R 与形成四聚体的MutS具有可比的DNA结合亲和力,但不匹配依赖性的MutH激活受到损害。我们的数据支持以下假设,即MutS的四聚化对于MMR中的MutS功能很重要,但不是必需的。

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