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肌钙蛋白C的G159D突变减弱了由肌钙蛋白I的Ser23/24磷酸化诱导的肌丝脱敏。

The troponin C G159D mutation blunts myofilament desensitization induced by troponin I Ser23/24 phosphorylation.

作者信息

Biesiadecki Brandon J, Kobayashi Tomoyoshi, Walker John S, Solaro R John, de Tombe Pieter P

机构信息

Department of Physiology and Biophysics and Center for Cardiovascular Research, College of Medicine, University of Illinois, Chicago, IL 60612, USA.

出版信息

Circ Res. 2007 May 25;100(10):1486-93. doi: 10.1161/01.RES.0000267744.92677.7f. Epub 2007 Apr 19.

Abstract

Striated muscle contraction is regulated by the binding of Ca(2+) to the N-terminal regulatory lobe of the cardiac troponin C (cTnC) subunit in the troponin complex. In the heart, beta-adrenergic stimulation induces protein kinase A phosphorylation of cardiac troponin I (cTnI) at Ser23/24 to alter the interaction of cTnI with cTnC in the troponin complex and is critical to the regulation of cardiac contractility. We investigated the effect of the dilated cardiomyopathy linked cTnC Gly159 to Asp (cTnC-G159D) mutation on the development of Ca(2+)-dependent tension and ATPase rate in whole troponin-exchanged skinned rat trabeculae. Even though this mutation is located in the C-terminal lobe of cTnC, the G159D mutation was demonstrated to depress ATPase activation and filament sliding in vitro. The effects of this mutation within the cardiac myofilament are unknown. Our results demonstrate that the cTnC-G159D mutation by itself does not alter the myofilament response to Ca(2+) in the cardiac muscle lattice. However, in the presence of cTnI phosphorylated at Ser23/24, which reduced Ca(2+) sensitivity and enhanced cross-bridge cycling in controls, cTnC-G159D specifically blunted the phosphorylation induced decrease in Ca(2+)-sensitive tension development without altering cross-bridge cycling. Measurements in purified troponin confirmed that this cTnC-G159D blunting of myofilament desensitization results from altered Ca(2+)-binding to cTnC. Our results provide novel evidence that modification of the cTnC-cTnI interaction has distinct effects on troponin Ca(2+)-binding and cross-bridge kinetics to suggest a novel role for thin filament mutations in the modulation of myofilament function through beta-adrenergic signaling as well as the development of cardiomyopathy.

摘要

横纹肌收缩受钙离子与肌钙蛋白复合物中心脏肌钙蛋白C(cTnC)亚基N端调节叶的结合调控。在心脏中,β-肾上腺素能刺激诱导蛋白激酶A使心脏肌钙蛋白I(cTnI)的丝氨酸23/24位点磷酸化,从而改变肌钙蛋白复合物中cTnI与cTnC的相互作用,这对心脏收缩力的调节至关重要。我们研究了与扩张型心肌病相关的cTnC甘氨酸159天冬氨酸(cTnC-G159D)突变对全肌钙蛋白交换的去表皮大鼠小梁中钙离子依赖性张力发展和ATP酶速率的影响。尽管该突变位于cTnC的C端叶,但已证明G159D突变会抑制体外ATP酶激活和细丝滑动。该突变在心肌细丝内的作用尚不清楚。我们的结果表明,cTnC-G159D突变本身不会改变心肌晶格中细丝对钙离子的反应。然而,在丝氨酸23/24位点磷酸化的cTnI存在时(其在对照中降低了钙离子敏感性并增强了横桥循环),cTnC-G159D特异性地减弱了磷酸化诱导的钙离子敏感性张力发展的降低,而不改变横桥循环。对纯化肌钙蛋白的测量证实,cTnC-G159D对细丝脱敏的减弱是由于与cTnC结合的钙离子改变所致。我们的结果提供了新的证据,表明cTnC-cTnI相互作用的改变对肌钙蛋白钙离子结合和横桥动力学有不同影响,提示细丝突变在通过β-肾上腺素能信号调节肌丝功能以及心肌病发展中具有新作用。

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