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心肌肌钙蛋白C中触发钙结合位点的定点突变

Site-directed mutation of the trigger calcium-binding sites in cardiac troponin C.

作者信息

Putkey J A, Sweeney H L, Campbell S T

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical School, Houston 77225.

出版信息

J Biol Chem. 1989 Jul 25;264(21):12370-8.

PMID:2745448
Abstract

The trigger Ca2+-binding sites in troponin C, those which initiate muscle contraction, are thought to be the first two of four potential sites (sites I-IV). In cardiac troponin C, the first Ca2+-binding site is inactive, and initiation of contraction in cardiac muscle appears to involve only the second site. To study this phenomenon and associated Ca2+-dependent protein conformational changes in cardiac troponin C, the cDNA for the chicken protein was incorporated into a bacterial expression plasmid to allow site-specific mutagenesis. Ca2+-binding site I was activated by deletion of Val-28 and conversion of amino acids 29-32 to those found at the first four positions in the active site I of fast skeletal troponin C. In a series of proteins, Ca2+-binding site II was inactivated by mutation of amino acids Asp-65, Asp-67, and Gly-70. All mutated proteins exhibited the predicted calcium-binding characteristics. The single mutation of converting Asp-65 to Ala was sufficient to inactivate site II. Ca2+-dependent conformational changes in the normal and mutated proteins were monitored by labeling with a sulfhydryl-specific fluorescent dye. Activation of Ca2+-binding site I or inactivation of site II, eliminated the large Ca2+-dependent increase in fluorescence seen in the wild type protein and there was, instead, a Ca2+-dependent decrease in fluorescence. All mutant proteins could associate with troponin I and troponin T to form a troponin complex. Activation of Ca2+-binding site I changed the characteristics of contraction in skinned slow skeletal muscle fibers such that the response to Ca2+ was more cooperative. Inactivation of Ca2+-binding site II abolished Ca2+-dependent contraction in skinned muscle fibers. The data provide a direct demonstration that Ca2+-binding site II in cardiac troponin C is essential for triggering muscle contraction and support the hypothesis that site I functions to modify the characteristics of contraction.

摘要

肌钙蛋白C中引发肌肉收缩的触发型钙离子结合位点,被认为是四个潜在位点(位点I-IV)中的前两个。在心肌肌钙蛋白C中,第一个钙离子结合位点是无活性的,心肌收缩的起始似乎仅涉及第二个位点。为了研究这种现象以及心肌肌钙蛋白C中相关的钙离子依赖性蛋白质构象变化,将鸡蛋白的cDNA整合到细菌表达质粒中,以便进行位点特异性诱变。通过缺失Val-28并将氨基酸29-32转换为快速骨骼肌肌钙蛋白C活性位点I中前四个位置的氨基酸,激活了钙离子结合位点I。在一系列蛋白质中,通过突变氨基酸Asp-65、Asp-67和Gly-70使钙离子结合位点II失活。所有突变蛋白均表现出预测的钙结合特性。将Asp-65转换为Ala的单一突变足以使位点II失活。通过用巯基特异性荧光染料标记来监测正常和突变蛋白中钙离子依赖性构象变化。钙离子结合位点I的激活或位点II的失活消除了野生型蛋白中观察到的钙离子依赖性荧光大幅增加,取而代之的是钙离子依赖性荧光降低。所有突变蛋白都能与肌钙蛋白I和肌钙蛋白T结合形成肌钙蛋白复合物。钙离子结合位点I的激活改变了去表皮慢骨骼肌纤维的收缩特性,使得对钙离子的反应更具协同性。钙离子结合位点II的失活消除了去表皮肌肉纤维中的钙离子依赖性收缩。这些数据直接证明了心肌肌钙蛋白C中的钙离子结合位点II对于触发肌肉收缩至关重要,并支持位点I起到改变收缩特性作用的假说。

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