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单磷酸酯对大肠杆菌碱性磷酸酶磷酸化过程中的离去基团依赖性

Leaving group dependence in the phosphorylation of Escherichia coli alkaline phosphatase by monophosphate esters.

作者信息

Hall A D, Williams A

出版信息

Biochemistry. 1986 Aug 26;25(17):4784-90. doi: 10.1021/bi00365a010.

Abstract

Values of kcat and Km have been measured for the Escherichia coli alkaline phosphatase catalyzed hydrolysis of 18 aryl and 12 alkyl monophosphate esters at pH 8.00 and 25 degrees C. A Brønsted plot of log (kcat/Km) (M-1 s-1) vs. the pK of the leaving hydroxyl group exhibits two regression lines: log (kcat/Km) = -0.19 (+/- 0.02) pKArOH + 8.14 (+/- 0.15) log (kcat/Km) = -0.19 (+/- 0.01) pKROH + 5.89 (+/- 0.17) Alkyl phosphates with aryl or large lipophilic side chains are not correlated by the above equations and occupy positions intermediate between the two lines. The observed change in effective charge on the leaving oxygen of the ester (-0.2) is very small, consistent with substantial electrophilic participation of the enzyme with this atom. Cyclohexylammonium ion is a noncompetitive inhibitor against 4-nitrophenyl phosphate substrate at pH 8.00, and neutral phenol is a competitive inhibitor (Ki = 82.6 mM); these data and the 100-fold larger reactivity of aryl over alkyl esters are consistent with the existence of a lipophilic binding site for the leaving group of the substrate. The absence of a major steric effect in kcat/Km for substituted aryl esters confirms that the leaving group in the enzyme--substrate complex points away from the surface of the enzyme. Arguments are advanced to exclude a dissociative mechanism (involving a metaphosphate ion) for the enzyme-catalyzed substitution at phosphorus.

摘要

已测定了大肠杆菌碱性磷酸酶在pH 8.00和25℃下催化18种芳基单磷酸酯和12种烷基单磷酸酯水解的kcat和Km值。log(kcat/Km)(M-1 s-1)对离去羟基的pK绘制的布朗斯特图呈现出两条回归线:log(kcat/Km)= -0.19(±0.02)pKArOH + 8.14(±0.15);log(kcat/Km)= -0.19(±0.01)pKROH + 5.89(±0.17)。具有芳基或大的亲脂性侧链的烷基磷酸酯不与上述方程相关,且位于两条线之间。酯的离去氧上观察到的有效电荷变化(-0.2)非常小,这与酶对该原子的大量亲电参与一致。环己铵离子在pH 8.00时是对4-硝基苯磷酸底物的非竞争性抑制剂,中性苯酚是竞争性抑制剂(Ki = 82. mM);这些数据以及芳基酯比烷基酯大100倍的反应活性与底物离去基团存在亲脂性结合位点一致。取代芳基酯在kcat/Km中不存在主要的空间效应,这证实了酶-底物复合物中的离去基团指向远离酶表面的方向。提出了一些论据来排除酶催化磷取代的解离机制(涉及偏磷酸根离子)。

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