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111Cd7-金属硫蛋白与乙二胺四乙酸的反应:重新评估

Reaction of 111Cd7-metallothionein with EDTA. A reappraisal.

作者信息

Gan T, Munoz A, Shaw C F, Petering D H

机构信息

Department of Chemistry, University of Wisconsin-Milwaukee 53201.

出版信息

J Biol Chem. 1995 Mar 10;270(10):5339-45. doi: 10.1074/jbc.270.10.5339.

Abstract

The ligand substitution reaction of EDTA with Cd7-metallothionein (Cd7-MT) has been reinvestigated. NMR titration of the 111Cd-protein with EDTA showed that the ligand interacts preferentially and cooperatively with Cd2+ ions in the beta-domain cluster. NMR and ultrafiltration kinetic analysis of this reaction using 5.6 mM Cd2+ as 111Cd7-MT and 56 mM EDTA indicated that cadmium-EDTA formed less rapidly than 111Cd peak intensity declined. Spectrophotometric and gel filtration studies of the reaction with 20 microM Cd2+ as Cd7-MT with various concentrations of EDTA revealed biphasic kinetics with much larger rate constants than observed in the NMR experiments. The fraction of total ligand substitution occurring in each kinetic step varied with EDTA concentration. The EDTA concentration dependence of both kinetic steps was consistent with the initial formation of protein.EDTA adducts, followed by their breakdown into products. Kinetic measurements were also made for the reactions of the isolated Cd4-alpha- and Cd3-beta-domains with EDTA. The Cd4 domain reacted with EDTA with biphasic kinetics, in which one Cd2+ was removed rapidly with first-order kinetics, which were zero-order in EDTA. The other three reacted with kinetics like those for the slower step of the holoprotein. Cd3-beta reacted with EDTA like the faster rate process associated with the Cd7-protein. The observed rate constants for the reaction of Cd7-metallothionein with EDTA and the fraction of reaction in the faster rate process were sensitive to protein concentration. These results are consistent with the hypothesis that the monomer-dimer equilibrium of the protein controls its kinetic reactivity with EDTA.

摘要

已对乙二胺四乙酸(EDTA)与镉-7-金属硫蛋白(Cd7-MT)的配体取代反应进行了重新研究。用EDTA对111Cd标记的蛋白质进行核磁共振滴定表明,该配体优先且协同地与β结构域簇中的Cd2+离子相互作用。使用5.6 mM Cd2+作为111Cd7-MT和56 mM EDTA对该反应进行核磁共振和超滤动力学分析表明,镉-EDTA的形成速度比111Cd峰强度下降的速度慢。用20 microM Cd2+作为Cd7-MT与不同浓度的EDTA进行反应的分光光度法和凝胶过滤研究显示,反应具有双相动力学,其速率常数比核磁共振实验中观察到的大得多。每个动力学步骤中发生的总配体取代分数随EDTA浓度而变化。两个动力学步骤的EDTA浓度依赖性与蛋白质-EDTA加合物的初始形成一致,随后它们分解为产物。还对分离的Cd4-α和Cd3-β结构域与EDTA的反应进行了动力学测量。Cd4结构域与EDTA反应具有双相动力学,其中一个Cd2+以一级动力学迅速去除,该动力学对EDTA为零级。另外三个的反应动力学与全蛋白较慢步骤的动力学相似。Cd3-β与EDTA的反应类似于与Cd7-蛋白质相关的较快速率过程。观察到的Cd7-金属硫蛋白与EDTA反应的速率常数以及较快速率过程中的反应分数对蛋白质浓度敏感。这些结果与蛋白质的单体-二聚体平衡控制其与EDTA的动力学反应性这一假设一致。

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