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白喉毒素A片段催化延伸因子2的ADP核糖基化机制。

The mechanism of ADP-ribosylation of elongation factor 2 catalyzed by fragment A from diphtheria toxin.

作者信息

Chung D W, Collier R J

出版信息

Biochim Biophys Acta. 1977 Aug 11;483(2):248-57. doi: 10.1016/0005-2744(77)90053-5.

Abstract

Measurements of the initial rate of ADP-ribosylation of elongation factor 2 (EF-2) catalyzed by Fragment A from diphtheria toxin support a sequential mechanism and suggest that the reaction proceeds through a central ternary complex involving Fragment A and the substrates, EF-2 and NAD. The Michaelis constants for EF-2 and NAD are 0.15 and 1.4 muM, respectively. As determined by equilibrium gel permeation, EF-2 does not bind Fragment A significantly, alone or in the presence of adenine, ADPribose, nicotinamide or NADH. Based on these and earlier results, we propose an ordered sequential mechanism for the reaction; the sequence of binding of substrates is NAD, followed by EF-2.

摘要

对白喉毒素A片段催化的延伸因子2(EF-2)的ADP-核糖基化初始速率的测量结果支持一种顺序机制,并表明该反应通过涉及A片段以及底物EF-2和NAD的中心三元复合物进行。EF-2和NAD的米氏常数分别为0.15和1.4μM。通过平衡凝胶渗透测定,单独或在腺嘌呤、ADP核糖、烟酰胺或NADH存在的情况下,EF-2与A片段的结合都不显著。基于这些结果和早期结果,我们提出了该反应的有序顺序机制;底物结合顺序为NAD,然后是EF-2。

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