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与乳酸脱氢酶结合的丙酮酸的分子特性:拉曼光谱研究

Molecular properties of pyruvate bound to lactate dehydrogenase: a Raman spectroscopic study.

作者信息

Deng H, Zheng J, Burgner J, Callender R

机构信息

Physics Department, City College, City University of New York, NY 10031.

出版信息

Proc Natl Acad Sci U S A. 1989 Jun;86(12):4484-8. doi: 10.1073/pnas.86.12.4484.

Abstract

Lactate dehydrogenase (LDH; EC 1.1.1.27) catalyzes the addition of pyruvate to the four position of the nicotinamide ring of bound NAD+; this NAD-pyruvate adduct is bound tightly to the enzyme. We have used the adduct as a model for pyruvate in a competent ternary complex by comparing the Raman spectrum of the bound adduct with that for unliganded pyruvate. To understand the observed normal modes of pyruvate both as the bound adduct and in water, we have taken the Raman spectra of a series of 13C- and 18O-labeled pyruvates. We find that the carboxylate COO- moiety of pyruvate remains unprotonated at LDH's active site and forms an ion pair complex. The frequency of pyruvate's carbonyl C = O moiety shifts from 1710 cm-1 in water downward 34 cm-1 when pyruvate binds to LDH. This frequency shift corresponds to a ca. 34% polarization of the carbonyl bond, indicates a substantial interaction between the C = O group and enzyme, and is direct evidence for and is a measure of enzyme-induced electronic perturbation of the substrate needed for catalysis. This bond polarization is likely brought about by electrostatic interactions between the carbonyl moiety and the protonated imidazole group of His-195 and the guanidino group from Arg-109. We discuss how the data bear on the enzymatic chemistry of LDH.

摘要

乳酸脱氢酶(LDH;EC 1.1.1.27)催化丙酮酸加成到结合的NAD⁺烟酰胺环的4位;这种NAD - 丙酮酸加合物与酶紧密结合。通过比较结合的加合物与未结合配体的丙酮酸的拉曼光谱,我们将该加合物用作活性三元复合物中丙酮酸的模型。为了理解丙酮酸在作为结合加合物和在水中时观察到的正常模式,我们获取了一系列¹³C和¹⁸O标记的丙酮酸的拉曼光谱。我们发现,丙酮酸的羧酸盐COO⁻部分在LDH的活性位点保持未质子化,并形成离子对复合物。当丙酮酸与LDH结合时,丙酮酸羰基C = O部分的频率从水中的1710 cm⁻¹向下移动34 cm⁻¹。这种频率变化对应于羰基键约34%的极化,表明C = O基团与酶之间存在实质性相互作用,并且是催化所需底物的酶诱导电子扰动的直接证据和衡量标准。这种键极化可能是由羰基部分与His - 195的质子化咪唑基团以及Arg - 109的胍基之间的静电相互作用引起的。我们讨论了这些数据与LDH酶促化学的关系。

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