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牛心低分子量磷酸酪氨酸蛋白磷酸酶的预稳态和稳态动力学分析。

Pre-steady-state and steady-state kinetic analysis of the low molecular weight phosphotyrosyl protein phosphatase from bovine heart.

作者信息

Zhang Z Y, VanEtten R L

机构信息

Department of Chemistry, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Biol Chem. 1991 Jan 25;266(3):1516-25.

PMID:1703150
Abstract

The complete time course of the hydrolysis of p-nitrophenyl phosphate catalyzed by the low molecular weight (acid) phosphotyrosyl protein phosphatase from bovine heart was elucidated and analyzed in detail. Burst titration kinetics were demonstrated for the first time with this class of enzyme. At pH 7.0, 4.5 degrees C, a transient pre-steady-state "burst" of p-nitrophenol was formed with a rate constant of 48 s-1. The burst was effectively stoichiometric and corresponded to a single enzyme active site/molecule. The burst was followed by a slow steady-state turnover of the phosphoenzyme intermediate with a rate constant of 1.2 s-1. Product inhibition studies indicated an ordered uni-bi kinetic scheme for the hydrolysis. Partition experiments conducted for several substrates revealed a constant product ratio. Vmax was constant for these substrates, and the overall rate of hydrolysis was increased greatly in the presence of alcohol acceptors. An enzyme-catalyzed 18O exchange between inorganic phosphate and water was detected and occurred with kcat = 4.47 x 10(-3) s-1 at pH 5.0, 37 degrees C. These results were all consistent with the existence of a phosphoenzyme intermediate in the catalytic pathway and with the breakdown of the intermediate being the rate-limiting step. The true Michaelis binding constant Ks = 6.0 mM, the apparent Km = 0.38 mM, and the rate constants for phosphorylation (k2 = 540 s-1) and dephosphorylation (k3 = 36.5 s-1) were determined under steady-state conditions with p-nitrophenyl phosphate at pH 5.0 and 37 degrees C in the presence of phosphate acceptors. The energies of activation for the enzyme-catalyzed hydrolysis at pH 5.0 and 7.0 were 13.6 and 14.1 kcal/mol, respectively. The activation energy for the enzyme-catalyzed medium 18O exchange between phosphate and water was 20.2 kcal/mol. Using the available equilibrium and rate constants, an energetic diagram was constructed for the enzyme-catalyzed reaction.

摘要

对牛心低分子量(酸性)磷酸酪氨酸蛋白磷酸酶催化对硝基苯磷酸酯水解的完整时间进程进行了详细阐释和分析。首次用这类酶证明了突发滴定动力学。在pH 7.0、4.5℃条件下,形成了对硝基苯酚的瞬时预稳态“突发”,速率常数为48 s-1。该突发在化学计量上是有效的,且对应于单个酶活性位点/分子。突发之后是磷酸酶中间体的缓慢稳态周转,速率常数为1.2 s-1。产物抑制研究表明水解反应存在有序的单底物-双底物动力学机制。对几种底物进行的分配实验显示产物比例恒定。这些底物的Vmax是恒定的,并且在存在醇受体的情况下,水解的总体速率大大增加。在pH 5.0、37℃条件下检测到酶催化的无机磷酸与水之间的18O交换,kcat = 4.47×10(-3) s-1。这些结果均与催化途径中存在磷酸酶中间体以及中间体的分解是限速步骤相一致。在pH 5.0、37℃条件下,在存在磷酸受体的情况下,用对硝基苯磷酸酯在稳态条件下测定了真实的米氏结合常数Ks = 6.0 mM、表观Km = 0.38 mM以及磷酸化(k2 = 540 s-1)和去磷酸化(k3 = 36.5 s-1)的速率常数。在pH 5.0和7.0条件下,酶催化水解的活化能分别为13.6和14.1 kcal/mol。酶催化的磷酸与水之间的介质18O交换的活化能为20.2 kcal/mol。利用可用的平衡常数和速率常数,构建了酶催化反应的能量图。

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