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猪肾氨基酰化酶的催化作用不涉及共价中间体。

Catalysis by hog-kidney aminoacylase does not involve a covalent intermediate.

作者信息

Röhm K H, Van Etten R L

出版信息

Eur J Biochem. 1986 Oct 15;160(2):327-32. doi: 10.1111/j.1432-1033.1986.tb09975.x.

Abstract

Hog kidney aminoacylase (N-acylamino acid amidohydrolase; acylase I) is shown to catalyze the exchange of acetate oxygens with water at a significant rate only when alanine is present simultaneously. These studies, conducted using the 18O-isotope induced shift on 13C-NMR spectra, provide evidence in favor of a linear kinetic mechanism as opposed to a 'ping-pong' double-displacement mechanism. At pH values above neutrality, aminoacylase I also catalyzes the exchange of alanine oxygens with those of water. Ionic strength and pH effects on the kinetics of aminoacylase I are examined and the results are interpreted in terms of a model of the enzyme active site.

摘要

猪肾氨基酰化酶(N-酰基氨基酸酰胺水解酶;酰化酶I)仅在同时存在丙氨酸时,才会以显著速率催化乙酸根中的氧与水进行交换。这些使用13C-NMR光谱上的18O同位素诱导位移进行的研究,提供了支持线性动力学机制而非“乒乓”双置换机制的证据。在pH值高于中性时,氨基酰化酶I还催化丙氨酸中的氧与水的氧进行交换。研究了离子强度和pH对氨基酰化酶I动力学的影响,并根据酶活性位点模型对结果进行了解释。

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