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钙调蛋白激酶II自抑制结构域的突变分析

Mutational analysis of the autoinhibitory domain of calmodulin kinase II.

作者信息

Brickey D A, Bann J G, Fong Y L, Perrino L, Brennan R G, Soderling T R

机构信息

Vollum Institute, Oregon Health Sciences University, Portland 97201.

出版信息

J Biol Chem. 1994 Nov 18;269(46):29047-54.

PMID:7961870
Abstract

Calmodulin (CaM)-kinase II is inactive in the absence of Ca2+/CaM due to interaction of its autoinhibitory domain with its catalytic domain. Previous studies using synthetic autoinhibitory domain peptides (residues 281-302) identified several residues as important for inhibitory potency and suggested that His282 may interact with the ATP-binding motif of the catalytic domain. To further examine the autoinhibitory domain, site-specific mutants were expressed using the baculovirus/Sf9 cell system. The purified mutants had many biochemical properties identical to wild-type kinase, but mutants H282Q, H282R, R283E, and T286D had 10-20% constitutive Ca(2+)-independent activities, indicating that these residues are involved in the autoinhibitory interaction. The Ca(2+)-independent activities of the H282Q, H282R, and R283E mutants exhibited 10-fold lower Km values for ATP than the wild-type kinase. Wild-type and mutant kinases, except T286A and T286D, generated Ca2+ independence upon autophosphorylation in the presence of Ca2+/CaM, and those mutants having constitutive Ca2+ independence also exhibited enhanced Ca2+/CaM-independent autophosphorylation. This Ca(2+)-independent autophosphorylation resulted in a decrease in total kinase activity, but there was little increase in Ca(2+)-independent activity, consistent with autophosphorylation of predominantly Thr306 rather than Thr286. These results are consistent with an inhibitory interaction of His282 and possibly Arg283 with the ATP-binding motif of the catalytic domain, and they indicate that constitutively active CaM-kinase II cannot autophosphorylate on Thr286 in the absence of bound Ca2+/CaM. Based on these and other biochemical characterizations, we propose a molecular model for the interaction of a bisubstrate autoinhibitory domain with the catalytic domain of CaM-kinase II.

摘要

钙调蛋白(CaM)激酶II在没有Ca2+/CaM的情况下是无活性的,这是由于其自身抑制结构域与催化结构域相互作用的结果。以前使用合成自身抑制结构域肽(残基281 - 302)的研究确定了几个对抑制效力很重要的残基,并表明His282可能与催化结构域的ATP结合基序相互作用。为了进一步研究自身抑制结构域,使用杆状病毒/Sf9细胞系统表达了位点特异性突变体。纯化的突变体具有许多与野生型激酶相同的生化特性,但突变体H282Q、H282R、R283E和T286D具有10 - 20%的组成型Ca(2+)非依赖性活性,表明这些残基参与了自身抑制相互作用。H282Q、H282R和R283E突变体的Ca(2+)非依赖性活性对ATP的Km值比野生型激酶低10倍。除了T286A和T286D外,野生型和突变型激酶在存在Ca2+/CaM的情况下自磷酸化时产生Ca2+非依赖性,并且那些具有组成型Ca2+非依赖性的突变体也表现出增强的Ca2+/CaM非依赖性自磷酸化。这种Ca(2+)非依赖性自磷酸化导致总激酶活性降低,但Ca(2+)非依赖性活性几乎没有增加,这与主要是Thr306而不是Thr286的自磷酸化一致。这些结果与His282以及可能的Arg283与催化结构域的ATP结合基序的抑制性相互作用一致,并且它们表明组成型活性CaM激酶II在没有结合的Ca2+/CaM时不能在Thr286上进行自磷酸化。基于这些和其他生化特征,我们提出了一个双底物自身抑制结构域与CaM激酶II催化结构域相互作用的分子模型。

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