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Examination of the reduced affinity of the thymidylate synthase G52S mutation for FdUMP by ab initio and semi-empirical studies.

机译:通过从头算和半实证研究研究了胸苷酸合酶G52S突变对FdUMP亲和力的降低。

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摘要

BACKGROUND: The G52S mutation in the Arg50 loop of thymidylate synthase leads to decreased binding of FdUMP. It has been suggested that the mutation affects the Arg50 residue (within the Arg50 loop) responsible for binding the phosphate of FdUMP. The binding of the methylguanidinium moiety as a model for Arg50 to a methylphosphate entity as a model for FdUMP was investigated with theoretical calculations, as well as the structure of the Arg50-Thr51-Gly52 tripeptide in comparison with the Arg50-Thr51-Ser52 tripeptide. METHODS: Gaussian-98 and PC Spartan programs were used to perform Hartree-Fock and Post-Hartree-Fock quantum chemical calculations as well as MNDO (semi-empirical calculations). RESULTS: It was found that the strongest binding occurs between the negative methylphosphate ion and methylguanidine. The replacement of Gly52 by Ser52 leads to a significant displacement of Arg50, which may be responsible for the decreased binding to FdUMP. CONCLUSION: The arginine-phosphate binding appears to be geometry dependent. Thus, the displacement of the Arg50 residue, as observed in these calculated models, upon mutation of Gly52 to Ser may contribute to decreased binding of FdUMP to mTS (G52S).
机译:背景:胸苷酸合酶的Arg50环中的G52S突变导致FdUMP的结合减少。已经提出,该突变影响负责结合FdUMP的磷酸盐的Arg50残基(在Arg50环内)。通过理论计算研究了甲基胍基部分(作为Arg50的模型)与甲基磷酸酯实体(作为FdUMP的模型)的结合,以及与Arg50-Thr51-Ser52三肽比较的Arg50-Thr51-Gly52三肽的结构。方法:使用Gaussian-98和PC Spartan程序执行Hartree-Fock和Post-Hartree-Fock量子化学计算以及MNDO(半经验计算)。结果:发现最强的结合发生在负甲基磷酸根离子和甲基胍之间。用Ser52替代Gly52导致Arg50发生明显置换,这可能是与FdUMP结合力降低的原因。结论:精氨酸-磷酸盐结合似乎是几何依赖性的。因此,如在这些计算模型中所观察到的,当Gly52突变为Ser时,Arg50残基的置换可能有助于降低FdUMP与mTS(G52S)的结合。

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