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钙与心肌肌钙蛋白C调节位点结合的动力学研究。

Kinetic studies of calcium binding to the regulatory site of troponin C from cardiac muscle.

作者信息

Dong W, Rosenfeld S S, Wang C K, Gordon A M, Cheung H C

机构信息

Department of Biochemistry and Molecular Genetics, University of Alabama at Birmingham 35294, USA.

出版信息

J Biol Chem. 1996 Jan 12;271(2):688-94. doi: 10.1074/jbc.271.2.688.

Abstract

We have studied the kinetics of the structural transitions induced by calcium binding to the single, regulatory site of cardiac troponin C by measuring the rates of calcium-mediated fluorescence changes with a monocysteine mutant of the protein (C35S) specifically labeled at Cys-84 with the fluorescent probe 2(-)[4'-(iodoacetamido)anilino]naphthalene-6-sulfonic acid. At 4 degrees C, the binding kinetics determined in the presence of Mg2+ was resolved into two phases with positive amplitude, which were completed in less than 100 ms. The rate of the fast phase increased linearly with [Ca2+] reaching a maximum of approximately 590 s-1, and that of the slow phase was approximately 100 s-1 and did not depend on Ca2+ concentration. Dissociation of bound Ca2+ from the regulatory site occurred with a rate of 102 s-1, whereas the dissociation from the two high affinity sites was about two orders of magnitude slower. These results are consistent with the following scheme for the binding of Ca2+ to the regulatory site: [formula: see text] where the asterisks denote states with enhanced fluorescence. The apparent second-order rate constant for calcium binding is Kok1 = 1.4 x 10(8) M 1 s-1. The two first-order transitions occur with observed rates of k1 + kappa-1 approximately 590 s-1 and kappa 2 + kappa-2 approximately 100 s-1, and the binding of Ca2+ to the regulatory site is not a simple diffusion-controlled reaction. These transitions provide the first information on the rates of Ca(2+)-induced conformational changes involving helix movements in the regulatory domain.

摘要

我们通过用荧光探针2-(-)[4'-(碘乙酰胺基)苯胺基]萘-6-磺酸特异性标记半胱氨酸-84的单半胱氨酸突变体(C35S)来测量钙介导的荧光变化速率,研究了钙与心肌肌钙蛋白C的单个调节位点结合所诱导的结构转变动力学。在4℃下,在Mg2+存在下测定的结合动力学分解为两个具有正振幅的阶段,在不到100毫秒内完成。快相的速率随[Ca2+]线性增加,达到最大值约590 s-1,慢相的速率约为100 s-1,且不依赖于Ca2+浓度。结合的Ca2+从调节位点解离的速率为102 s-1,而从两个高亲和力位点的解离慢约两个数量级。这些结果与Ca2+与调节位点结合的以下模式一致:[公式:见正文],其中星号表示荧光增强的状态。钙结合的表观二级速率常数为Kok1 = 1.4 x 10(8) M-1 s-1。两个一级转变的观测速率为k1 + κ-1约590 s-1和κ2 + κ-2约100 s-1,并且Ca2+与调节位点的结合不是简单的扩散控制反应。这些转变提供了关于涉及调节域中螺旋运动的Ca(2+)诱导构象变化速率的首个信息。

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