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苯乙二醛对II型钙调蛋白依赖性蛋白激酶的构象敏感修饰。

Conformation-sensitive modification of the type II calmodulin-dependent protein kinase by phenylglyoxal.

作者信息

King M M

机构信息

Department of Chemistry, Ohio State University, Columbus 43210.

出版信息

J Biol Chem. 1988 Apr 5;263(10):4754-7.

PMID:3350811
Abstract

Chemical modification by phenylglyoxal was used to investigate relationships between the structure, function, and regulation of the type II calmodulin-dependent protein kinase. Modification of the protein kinase by phenylglyoxal resulted in specific labeling of one distinct site, most likely an important arginine residue, with concomitant inactivation of the enzyme. Labeling and inactivation of the protein kinase was prevented by Mg2+-ADP which suggests that modification occurred at, or in close proximity to, its nucleotide-binding pocket. Half-maximal protection by Mg2+-ADP was enhanced by calmodulin which decreased the K0.5 for ADP from 540 to 61 microM. This response of the enzyme to calmodulin indicates that the modulator protein increases the affinity of the protein kinase for nucleotides. Inactivation of the enzyme by phenylglyoxal was dependent on the presence of Mg2+ or Ca2+/calmodulin, and further enhanced by the simultaneous addition of these effectors to the reaction. The Mg2+ effect is indicative of binding of this divalent metal ion to the protein kinase even in the absence of calmodulin and nucleotides. The stimulation of the modification reaction by calmodulin indicates an increase in the reactivity or accessibility of the modified residue in response to calmodulin-regulated conformational changes on the enzyme. The calmodulin-induced changes observed in this study may play important roles in the molecular mechanisms of activation of the type II calmodulin-dependent protein kinase.

摘要

用苯乙二醛进行化学修饰,以研究II型钙调蛋白依赖性蛋白激酶的结构、功能和调节之间的关系。苯乙二醛对蛋白激酶的修饰导致一个独特位点的特异性标记,最有可能是一个重要的精氨酸残基,同时酶失活。Mg2+-ADP可防止蛋白激酶的标记和失活,这表明修饰发生在其核苷酸结合口袋处或附近。钙调蛋白增强了Mg2+-ADP的半最大保护作用,使ADP的K0.5从540 microM降至61 microM。该酶对钙调蛋白的这种反应表明调节蛋白增加了蛋白激酶对核苷酸的亲和力。苯乙二醛使酶失活依赖于Mg2+或Ca2+/钙调蛋白的存在,并且通过将这些效应物同时添加到反应中而进一步增强。Mg2+的作用表明即使在没有钙调蛋白和核苷酸的情况下,这种二价金属离子也能与蛋白激酶结合。钙调蛋白对修饰反应的刺激表明,响应于酶上钙调蛋白调节的构象变化,修饰残基的反应性或可及性增加。本研究中观察到的钙调蛋白诱导的变化可能在II型钙调蛋白依赖性蛋白激酶激活的分子机制中起重要作用。

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