首页> 外文期刊>Journal of Molecular Biology >Mechanism of the Escherichia coli DNA T:G-mismatch endonuclease (Vsr protein) probed with thiophosphate-containing oligodeoxynucleotides.
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Mechanism of the Escherichia coli DNA T:G-mismatch endonuclease (Vsr protein) probed with thiophosphate-containing oligodeoxynucleotides.

机译:大肠杆菌DNA T:G不匹配核酸内切酶(Vsr蛋白)的机理用含硫代磷酸的寡脱氧核苷酸进行了探测。

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摘要

The mechanism of the Escherichia coli DNA T:G mismatch endonuclease (Vsr) has been investigated using oligodeoxynucleotides substituted, at the scissile phosphate, with isomeric phosphorothioates and a 3'-phosphorothiolate. Binding and kinetic data with the phosphorothioates/phosphorothiolate indicate that the two magnesium ions, which constitute essential co-factors, are required to stabilise the extra negative charge developed on the phosphate as the transition state is formed. Additionally one of the magnesium ions serves to activate the leaving group (the non-bridging 3'-oxygen atom of the scissile phosphate) during the hydrolysis reaction. Stereochemical analysis, using the R(p) phosphorothioate isomer, indicates that Vsr carries out a hydrolytic reaction with inversion of stereochemistry at phosphorus, compatible with an in-line attack of water and a pentacovalent transition state with trigonal bipyramidal geometry. In conjunction with structures of Vsr bound to its products, these data allow thereconstruction of the enzyme-substrate complex and a comprehensive description of the hydrolysis mechanism.
机译:大肠杆菌DNA T:G错配核酸内切酶(Vsr)的机理已通过使用在易裂磷酸中被硫代磷酸酯和3'-硫代磷酸酯取代的寡脱氧核苷酸进行了研究。与硫代磷酸酯/硫代磷酸酯的结合和动力学数据表明,在形成过渡态时,构成基本辅因子的两个镁离子需要稳定形成在磷酸盐上的额外负电荷。另外,镁离子之一用于在水解反应过程中活化离去基团(易裂磷酸的非桥连3'-氧原子)。立体化学分析,使用R(p)硫代磷酸酯异构体,表明Vsr进行了水解反应,在磷上立体化学转化,与水的在线侵蚀和具有三角双锥几何形状的五价过渡态兼容。结合与其产物结合的Vsr的结构,这些数据允许酶-底物复合物的构建和水解机理的全面描述。

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