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猪心脏乳酸脱氢酶。丙酮酸的结合以及含丙酮酸三元复合物的相互转化。

Pig heart lactate dehydrogenase. Binding of pyruvate and the interconversion of pyruvate-containing ternary complexes.

作者信息

Boland M J, Gutfreund H

出版信息

Biochem J. 1975 Dec;151(3):715-27. doi: 10.1042/bj1510715.

Abstract
  1. Lactate oxidation catalysed by pig heart lactate dehydrogenase was studied in the presence of inhibitory concentrations of pyruvate. Experimental results show the presence of an intermediate which occurs immediately after the hydride transfer step, but before the dissociation of pyruvate and the H+ produced by the reaction. The rate constant for pyruvate dissociation and the dissociation constant for pyruvate from the ternary complex differ from those obtained in pyruvate reduction experiments. 2. In single-turnover pyruvate reduction by pig heart lactate dehydrogenase at pH8.0 pyruvate can bind to the enzyme before a H+ is taken up, and the subsequent uptake of a H+ is governed by a step that is also rate-limiting for single-turnover and steady-state NADH oxidation. 3. Observation of various intermediates in the single-turnover pyruvate reduction experiments has made it possible to determine separately the dissociation constant and Km value for pyruvate at pH8.0, and also the catalytic turnover rate and Km for pyruvate under first-order conditions at different pH values. 4. Further studies on single-turnover pyruvate reduction carried out in 2H2O, or in water at low temperature, show another step which, under these conditions, is slower than that controlling H+ uptake and rate-limiting for NADH oxidation. A scheme is presented which explains these results.
摘要
  1. 在存在抑制浓度丙酮酸的情况下,研究了猪心乳酸脱氢酶催化的乳酸氧化反应。实验结果表明存在一种中间体,它在氢化物转移步骤之后立即出现,但在丙酮酸和反应产生的H⁺解离之前。丙酮酸解离的速率常数以及丙酮酸从三元复合物中的解离常数与丙酮酸还原实验中得到的不同。2. 在pH8.0条件下,猪心乳酸脱氢酶单周转丙酮酸还原过程中,丙酮酸可在摄取H⁺之前与酶结合,随后摄取H⁺受一个对单周转和稳态NADH氧化均为限速步骤的控制。3. 在单周转丙酮酸还原实验中观察到各种中间体,从而能够分别确定pH8.0时丙酮酸的解离常数和Km值,以及在不同pH值的一级条件下丙酮酸的催化周转速率和Km。4. 在2H₂O中或低温水中进行的单周转丙酮酸还原的进一步研究表明,在这些条件下,另一个步骤比控制H⁺摄取且对NADH氧化限速的步骤更慢。提出了一个解释这些结果的方案。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bbe/1172421/ea4413090da6/biochemj00547-0274-a.jpg

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