首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Catalytic Activity of Human Placental Alkaline Phosphatase (PLAP): Insights from a Computational Study
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Catalytic Activity of Human Placental Alkaline Phosphatase (PLAP): Insights from a Computational Study

机译:人胎盘碱性磷酸酶(PLAP)的催化活性:计算研究的见解。

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摘要

Alkaline phosphatases (APs) catalyze the hydrolysis and transphosphorylation of phosphate monoesters. Quantum-mechanical computational methods were employed to study the catalytic mechanism of human placental AP (PLAP). An active-site model was used, constructed on the basis of the X-ray crystal structure of the enzyme. Kinetic and thermodynamic evaluations were achieved for each reaction step. Calculations shed light on the mechanistic differences that had been experimentally observed between aryl and alkyl phosphates, particularly regarding the rate-determining step. The functional implications of relevant residues in the active site were examined. The present theoretical study rationalizes experimental observations previously reported in the literature.
机译:碱性磷酸酶(APs)催化磷酸单酯的水解和转磷酸化。量子力学计算方法被用来研究人类胎盘AP(PLAP)的催化机理。使用基于酶的X射线晶体结构构建的活性位点模型。每个反应步骤均进行了动力学和热力学评估。计算揭示了芳基磷酸酯和烷基磷酸酯之间通过实验观察到的机械差异,特别是在速率确定步骤方面。检查了活性位点中相关残基的功能含义。本理论研究使先前在文献中报道的实验观察合理化。

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