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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The influence of active site conformations on the hydride transfer step of the thymidylate synthase reaction mechanism
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The influence of active site conformations on the hydride transfer step of the thymidylate synthase reaction mechanism

机译:活性位点构象对胸苷酸合酶反应机理的氢化物转移步骤的影响

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摘要

The hydride transfer from C6 of tetrahydrofolate to the reaction's exocyclic methylene-dUMP intermediate is the rate limiting step in thymidylate synthase (TSase) catalysis. This step has been studied by means of QM/ MM molecular dynamics simulations to generate the corresponding free energy surfaces. The use of two different initial X-ray structures has allowed exploring different conformational spaces and the existence of chemical paths with not only different reactivities but also different reaction mechanisms. The results confirm that this chemical conversion takes place preferentially via a concerted mechanism where the hydride transfer is conjugated to thiol-elimination from the product. The findings also confirm the labile character of the substrate-enzyme covalent bond established between the C6 of the nucleotide substrate and a conserved cysteine residue. The calculations also reproduce and rationalize a normal H/T 2 degrees kinetic isotope effect measured for that step. From a computational point of view, the results demonstrate that the use of an incomplete number of coordinates to describe the real reaction coordinate can render biased results.
机译:从四氢叶酸的C6到反应的环外亚甲基-dUMP中间体的氢化物转移是胸苷酸合酶(TSase)催化中的限速步骤。已通过QM / MM分子动力学模拟研究了此步骤,以生成相应的自由能表面。两种不同的初始X射线结构的使用已允许探索不同的构象空间以及化学路径的存在,这些化学路径不仅具有不同的反应性而且具有不同的反应机理。结果证实了该化学转化优先通过协同机制进行,其中氢化物转移与产物中的硫醇消除结合。这些发现还证实了在核苷酸底物的C6和保守的半胱氨酸残基之间建立的底物-酶共价键的不稳定特性。该计算还重现并合理化了针对该步骤测得的正常H / T 2度动力学同位素效应。从计算的角度来看,结果表明,使用不完整数量的坐标来描述真实的反应坐标会产生偏差的结果。

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