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蛋白质构象流动性在酶催化中的作用:特定肽底物对α-胰凝乳蛋白酶的酰化作用

Role of protein conformational mobility in enzyme catalysis: acylation of alpha-chymotrypsin by specific peptide substrates.

作者信息

Hengge Alvan C, Stein Ross L

机构信息

Department of Chemistry and Biochemistry, Utah State University, 0300 Old Main Hill, Logan, Utah 84322, USA.

出版信息

Biochemistry. 2004 Jan 27;43(3):742-7. doi: 10.1021/bi030222k.

Abstract

To probe the mechanistic origins of convex Eyring plots that have been observed for alpha-chymotrypsin (alpha-CT)-catalyzed hydrolysis of specific p-nitroanilide substrates [Case, A., and Stein, R. L. (2003) Biochemistry 42, 3335-3348], we determined the temperature-dependence of (15)N-kinetic isotope effects for the alpha-CT-catalyzed hydrolysis of N-succinyl-Phe p-nitroanilide (Suc-Phe-pNA). To provide an interpretational context for these enzymatic isotope effects, we also determined 15N-KIE for alkaline hydrolysis of p-nitroacetanilide. In 0.002 and 2 N hydroxide (30 degrees C), 15N-KIE values are 1.035 and 0.995 (+/-0.001), respectively, and are consistent with the reported [HO-]-dependent change in rate-limiting step from leaving group departure from an anionic tetrahedral intermediate in dilute base, to hydroxide attack in concentrated base. For the alpha-CT-catalyzed hydrolysis of Suc-Phe-pNA, 15N-KIE is on kc/Km and thus reflects structural features of transition states for all reaction steps up to and including acylation of the active site serine. The isotope effect at 35 degrees C is 1.014 (+/-0.001) and suggests that in the transition state for this reaction, departure of leaving group from the tetrahedral intermediate is well advanced. Significantly, 15N-KIE does not vary over the temperature range 5-45 degrees C. This result eliminates one of the competing hypotheses for the convex Eyring plot observed for this reaction, that is, a temperature-dependent change in rate-limiting step within the chemical manifold of acylation, but supports a mechanism in which an isomerization of enzyme conformation is coupled to active site chemistry. We finally suggest that the near absolute temperature-independence of 15N-KIE may point to a unique transition state for this process.

摘要

为探究在α-胰凝乳蛋白酶(α-CT)催化特定对硝基苯胺底物水解反应中观察到的凸型艾林曲线的机理起源[凯斯,A.,和斯坦,R. L.(2003年)《生物化学》42卷,3335 - 3348页],我们测定了α-CT催化N-琥珀酰苯丙氨酸对硝基苯胺(Suc-Phe-pNA)水解反应的(15)N-动力学同位素效应的温度依赖性。为给这些酶促同位素效应提供一个解释背景,我们还测定了对硝基乙酰苯胺碱性水解反应的15N-KIE。在0.002 N和2 N的氢氧化物中(30摄氏度),15N-KIE值分别为1.035和0.995(±0.001),这与报道的在稀碱中限速步骤从阴离子四面体中间体离去基团的离去,到浓碱中氢氧根进攻时依赖[HO-]的速率变化一致。对于α-CT催化的Suc-Phe-pNA水解反应,15N-KIE是基于kc/Km的,因此反映了直至并包括活性位点丝氨酸酰化在内的所有反应步骤过渡态的结构特征。35摄氏度时的同位素效应为1.014(±0.001),这表明在该反应的过渡态中,离去基团从四面体中间体的离去已相当充分。值得注意的是,15N-KIE在5 - 45摄氏度的温度范围内没有变化。这一结果排除了对该反应观察到的凸型艾林曲线的一个相互竞争的假设,即酰化化学过程中限速步骤的温度依赖性变化,但支持了一种酶构象异构化与活性位点化学作用相偶联的机制。我们最终认为,15N-KIE几乎与绝对温度无关可能表明该过程存在一个独特的过渡态。

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