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未络合的猕猴桃蛋白酶分子的异构化:溶剂扰动提供的酶催化中其他步骤的动力学可达性。

Isomerization of the uncomplexed actinidin molecule: kinetic accessibility of additional steps in enzyme catalysis provided by solvent perturbation.

作者信息

Reid James D, Hussain Syeed, Bailey Tamara S F, Sonkaria Sanjiv, Sreedharan Suneal K, Thomas Emrys W, Resmini Marina, Brocklehurst Keith

机构信息

Laboratory of Structural and Mechanistic Enzymology, School of Biological Sciences, Queen Mary, University of London, Mile End Road, London E1 4NS, UK.

出版信息

Biochem J. 2004 Mar 1;378(Pt 2):699-703. doi: 10.1042/BJ20031318.

Abstract

The effects of increasing the content of the aprotic dipolar organic co-solvent acetonitrile on the observed first-order rate constant (k(obs)) of the pre-steady state acylation phases of the hydrolysis of N-acetyl-Phe-Gly methyl thionester catalysed by the cysteine proteinase variants actinidin and papain in sodium acetate buffer, pH 5.3, were investigated by stopped-flow spectral analysis. With low acetonitrile content, plots of k(obs) against [S]0 for the actinidin reaction are linear with an ordinate intercept of magnitude consistent with a five-step mechanism involving a post-acylation conformational change. Increasing the acetonitrile content results in marked deviations of the plots from linearity with a rate minimum around [S]0=150 microM. The unusual negative dependence of k(obs) on [S]0 in the range 25-150 microM is characteristic of a rate-determining isomerization of the free enzyme before substrate binding, additional to the five-step mechanism. There was no evidence for this phenomenon nor for the post-acylation conformational change in the analogous reaction with papain. For this enzyme, however, acetonitrile acts as an inhibitor with approximately uncompetitive characteristics. Possible mechanistic consequences of the differential solvent-perturbed kinetics are indicated. The free enzyme isomerization of actinidin may provide an explanation for the marked difference in sensitivity between this enzyme and papain of binding site-catalytic site signalling in reactions of substrate-derived 2-pyridyl disulphide reactivity probes.

摘要

通过停流光谱分析,研究了在pH 5.3的醋酸钠缓冲液中,增加非质子偶极有机溶剂乙腈的含量对由半胱氨酸蛋白酶变体肌动蛋白和木瓜蛋白酶催化的N-乙酰苯丙氨酸-甘氨酸甲基硫酯水解的预稳态酰化阶段观察到的一级速率常数(k(obs))的影响。在低乙腈含量下,肌动蛋白反应的k(obs)对[S]0的图是线性的,纵坐标截距的大小与涉及酰化后构象变化的五步机制一致。增加乙腈含量会导致图明显偏离线性,在[S]0 = 150 μM左右出现速率最小值。在25 - 150 μM范围内,k(obs)对[S]0的异常负依赖性是底物结合前游离酶的速率决定异构化的特征,这是五步机制之外的。在木瓜蛋白酶的类似反应中,没有证据表明存在这种现象或酰化后构象变化。然而,对于这种酶,乙腈表现为具有近似非竞争性特征的抑制剂。指出了不同溶剂扰动动力学的可能机制后果。肌动蛋白的游离酶异构化可能解释了该酶与木瓜蛋白酶在底物衍生的2-吡啶基二硫化物反应性探针反应中结合位点-催化位点信号传导敏感性的显著差异。

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