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尿苷二磷酸半乳糖4-表异构酶。底物类似物还原NAD⁺的pH依赖性。

Uridine diphosphate galactose 4-epimerase. pH dependence of the reduction of NAD+ by a substrate analog.

作者信息

Arabshahi A, Flentke G R, Frey P A

机构信息

Institute for Enzyme Research, Graduate School, Madison, Wisconsin.

出版信息

J Biol Chem. 1988 Feb 25;263(6):2638-43.

PMID:3277958
Abstract

Neutron activation analysis of UDP-galactose 4-epimerase from Escherichia coli for 53 metals shows that the enzyme does not contain any of these metals at significant levels. The substrate analog P1-5'-uridine-P2-glucose-6-yl pyrophosphate (UGP), a structural isomer of UDP-glucose with the sugar linked to UDP through the C-6 hydroxyl group, is an inactivator that irreversibly reduces epimerase.NAD+ to epimerase.NADH. The pH dependence of kobs reveals the essential involvement of an acidic group, kinetically measured pKa = 5.48 +/- 0.08, in unprotonated form and two weakly acidic or basic groups, apparent pKa values of 10.03 +/- 0.43, in protonated forms. Measurements of kobs as a function of [UGP] show that it is given by kobs = k[UGP]/(K + [UGP]) at a given pH, where K = 0.19 +/- 0.04 mM throughout the pH range 4.8-10.4. The pH-dependent first order rate constants range from 0.28 to 1.94 s-1, with the maximum value at pH 7.6 and decreasing at acidic and basic pH values. Reaction of [glucose-1-2H]UGP proceeds with kinetic isotope effects of 5.0, 2.1, 2.0, 1.9, and 3.5 at pH values 5.0, 6.2, 7.6, 9.0, and 10.0, respectively. Therefore, hydride transfer becomes rate-limiting at pH extremes but is not limiting at neutral pH, although deuteride transfer is significantly limiting at all pH values. The isotope effects facilitated correction of the kinetic pK values to the thermodynamic values 6.1-6.2 on the acid side and 9.0-9.6 on the alkaline side. We postulate that the group with pK1 = 5.5 (6.1-6.2 corrected) functions as an enzymic general base that abstracts the glucosyl C-1 hydroxyl proton in concert with transfer of the C-1 hydrogen and two electrons to NAD+. The pH dependence on the alkaline side may be related to the uridine nucleotide-dependent conformational transition that is an essential step in the reduction of epimerase.NAD+ to epimerase.NADH by sugars.

摘要

对来自大肠杆菌的UDP - 半乳糖4 - 表异构酶进行53种金属的中子活化分析表明,该酶不含任何显著水平的这些金属。底物类似物P1 - 5'-尿苷 - P2 - 葡萄糖 - 6 - 基焦磷酸(UGP),一种UDP - 葡萄糖的结构异构体,糖通过C - 6羟基与UDP相连,是一种不可逆地使表异构酶失活的失活剂,将表异构酶·NAD⁺还原为表异构酶·NADH。观测速率常数(kobs)对pH的依赖性揭示了一个酸性基团(动力学测定的pKa = 5.48 ± 0.08,以未质子化形式存在)和两个弱酸性或碱性基团(表观pKa值为10.03 ± 0.43,以质子化形式存在)的重要参与。kobs作为[UGP]的函数的测量结果表明,在给定pH下,kobs = k[UGP]/(K + [UGP]),其中在4.8 - 10.4的整个pH范围内K = 0.19 ± 0.04 mM。pH依赖性一级速率常数范围为0.28至1.94 s⁻¹,在pH 7.6时达到最大值,在酸性和碱性pH值时降低。[葡萄糖 - 1 - ²H]UGP的反应在pH值分别为5.0、6.2、7.6、9.0和10.0时,动力学同位素效应分别为5.0、2.1、2.0、1.9和3.5。因此,在极端pH值下氢化物转移成为限速步骤,但在中性pH值下不是限速步骤,尽管氘化物转移在所有pH值下都有显著限制。同位素效应有助于将动力学pK值校正为热力学值,酸性一侧为6.1 - 6.2,碱性一侧为9.0 - 9.6。我们推测pK1 = 5.5(校正后为6.1 - 6.2)的基团作为酶的通用碱,与C - 1氢和两个电子向NAD⁺的转移协同作用,夺取葡糖基C - 1羟基质子。碱性一侧的pH依赖性可能与尿苷核苷酸依赖性构象转变有关,这是糖将表异构酶·NAD⁺还原为表异构酶·NADH的关键步骤。

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