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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Formation of chelate structure between His-Met dipeptide and diaqua-cisplatin complex; DFT/PCM computational study
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Formation of chelate structure between His-Met dipeptide and diaqua-cisplatin complex; DFT/PCM computational study

机译:他 - Met二肽和豆果梗配合物之间的螯合结构的形成; DFT / PCM计算研究

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Interaction of cisplatin in activated diaqua-form with His-Met dipeptide is explored using DFT approach with PCM model. First the conformation space of the dipeptide is explored to find the most stable structure (labeled 0683). Several functionals with double-zeta basis set are used for optimization and obtained order of conformers is confirmed by the CCSD(T) single-point calculations. Supermolecular model is used to determine reaction coordinate for the replacement of aqua ligands consequently by N-site of histidine and S-site of methionine and reversely. Despite the monoadduct of Pt-S(Met) is thermodynamically less stable this reaction passes substantially faster (by several orders of magnitude) than coordination of cisplatin to histidine. The consequent chelate formation occurs relatively fast with energy release up to 12 kcal mol(-1).
机译:利用PCM模型,探索了顺铂在激活的Duaqua形式中的相互作用与他的二肽进行探讨。 首先,探索了二肽的构象空间,以找到最稳定的结构(标记为0683)。 具有双Zeta基础组的多个功能用于优化,并通过CCSD(T)单点计算确认了所得符合特顺序。 超分子模型用于确定通过蛋氨酸的组氨酸和S-位点的n位点和反向替换Aqua配体的反应坐标。 尽管PT-S(MET)的单片体进行了热力学上的稳定性较少,但该反应显着越快(逐渐达到几个数量级),而不是顺铂与组氨酸的协调。 随之而来的螯合形成与能量释放至12kcal摩尔(-1)相对快。

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