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汞促进大肠杆菌天冬氨酸转氨甲酰酶释放锌离子。

Mercurial-promoted Zn2+ release from Escherichia coli aspartate transcarbamoylase.

作者信息

Hunt J B, Neece S H, Schachman H K, Ginsburg A

出版信息

J Biol Chem. 1984 Dec 10;259(23):14793-803.

PMID:6389552
Abstract

The release of Zn2+ from aspartate transcarbamoylase (ATCase; c6r6) upon challenge by p-hydroxymercuriphenylsulfonate (PMPS) has been studied using the sensitive, high-affinity metallochromic indicator 4-(2-pyridylazo)resorcinol at pH 7.0. When the--SH group of each catalytic (c) chain is protected, 1 Zn2+ is released for every 4 eq of PMPS added to ATCase during titration of the 24--SH groups of regulatory (r) chains. Moreover, the release of Zn2+ is a linear function of PMPS added, indicating that the rate-limiting step in Zn2+ release is mercurial attack on the 1st of the 4 r--SH groups bonded tetrahedrally to Zn2+ in an r chain near c:r contacts. Dissociation of ATCase is linked to Zn2+ release and mercaptide formation; e.g. upon addition of 4 eq of PMPS to ATCase in 4-(2-hydroxyethyl)-1-piperazineethanesulfonic acid (Hepes) buffer, 1/6th of ATCase is dissociated to c3 and r2 subunits at approximately 83% of the rate of Zn2+ release, with no accumulation of the c6r4 intermediate as is observed in KPO4 buffer. Adding less than or equal to 4 PMPS/ATCase, the release of Zn2+ is first-order in [PMPS] and is virtually independent of [ATCase] with an activation energy of 18 kcal/mol. With large excesses of PMPS, stopped-flow traces show a lag period followed by pseudo first-order release of Zn2+ from ATCase and the reaction order in [PMPS] = approximately 1.3. Under these conditions, PMPS has a chaotropic effect on ATCase; the activation energy for Zn2+ release is much lower than that obtained with limiting PMPS and is increased by the presence of phosphate or active-site ligand from 6.6 to approximately 12 kcal/mol. A reasonable explanation of the observed kinetic data is that the organomercurial reagent binds reversibly to nitrogenous side chain groups in an ATCase molecule prior to the rate-limiting reaction with a sulfhydryl group.

摘要

在pH 7.0条件下,使用灵敏的高亲和力金属显色指示剂4-(2-吡啶偶氮)间苯二酚,研究了对羟基汞苯磺酸盐(PMPS)激发下天冬氨酸转氨甲酰酶(ATCase;c6r6)中锌离子(Zn2+)的释放情况。当每个催化(c)链的-SH基团受到保护时,在对调节(r)链的24个-SH基团进行滴定过程中,每向ATCase中加入4当量的PMPS,就会释放出1个Zn2+。此外,Zn2+的释放是加入的PMPS的线性函数,这表明Zn2+释放的限速步骤是汞对在靠近c:r接触点的r链中与Zn2+四面体键合的4个r-SH基团中的第1个的攻击。ATCase的解离与Zn2+的释放和硫醇盐的形成有关;例如,在4-(2-羟乙基)-1-哌嗪乙磺酸(Hepes)缓冲液中向ATCase中加入4当量的PMPS时,约83%的Zn2+释放速率下有1/6的ATCase解离为c3和r2亚基,在KPO4缓冲液中未观察到c6r4中间体的积累。加入小于或等于4个PMPS/ATCase时,Zn2+的释放对[PMPS]呈一级反应,实际上与[ATCase]无关,活化能为18千卡/摩尔。当PMPS大量过量时,停流轨迹显示有一个滞后阶段,随后Zn2+从ATCase中以准一级反应释放,且[PMPS]中的反应级数约为1.3。在这些条件下,PMPS对ATCase有离液序列高的盐效应;Zn2+释放的活化能远低于在有限PMPS条件下获得的活化能,并且由于磷酸盐或活性位点配体的存在,活化能从6.6千卡/摩尔增加到约12千卡/摩尔。对观察到的动力学数据的合理解释是,在与巯基发生限速反应之前,有机汞试剂可逆地结合到ATCase分子中的含氮侧链基团上。

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