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心肌肌钙蛋白C的结构意外地揭示了一个封闭的调节结构域。

Structure of cardiac muscle troponin C unexpectedly reveals a closed regulatory domain.

作者信息

Sia S K, Li M X, Spyracopoulos L, Gagné S M, Liu W, Putkey J A, Sykes B D

机构信息

Department of Biochemistry, Medical Research Council Group in Protein Structure and Function, University of Alberta, Edmonton, Alberta T6G 2H7, Canada.

出版信息

J Biol Chem. 1997 Jul 18;272(29):18216-21. doi: 10.1074/jbc.272.29.18216.

Abstract

The regulation of cardiac muscle contraction must differ from that of skeletal muscles to effect different physiological and contractile properties. Cardiac troponin C (TnC), the key regulator of cardiac muscle contraction, possesses different functional and Ca2+-binding properties compared with skeletal TnC and features a Ca2+-binding site I, which is naturally inactive. The structure of cardiac TnC in the Ca2+-saturated state has been determined by nuclear magnetic resonance spectroscopy. The regulatory domain exists in a "closed" conformation even in the Ca2+-bound (the "on") state, in contrast to all predicted models and differing significantly from the calcium-induced structure observed in skeletal TnC. This structure in the Ca2+-bound state, and its subsequent interaction with troponin I (TnI), are crucial in determining the specific regulatory mechanism for cardiac muscle contraction. Further, it will allow for an understanding of the action of calcium-sensitizing drugs, which bind to cardiac TnC and are known to enhance the ability of cardiac TnC to activate cardiac muscle contraction.

摘要

心肌收缩的调节必须与骨骼肌不同,以实现不同的生理和收缩特性。心肌肌钙蛋白C(TnC)是心肌收缩的关键调节因子,与骨骼肌TnC相比具有不同的功能和Ca2+结合特性,并且具有一个天然无活性的Ca2+结合位点I。通过核磁共振光谱确定了Ca2+饱和状态下心肌TnC的结构。即使在Ca2+结合(“开启”)状态下,调节结构域也以“封闭”构象存在,这与所有预测模型相反,并且与在骨骼肌TnC中观察到的钙诱导结构有显著差异。这种Ca2+结合状态下的结构及其随后与肌钙蛋白I(TnI)的相互作用,对于确定心肌收缩的特定调节机制至关重要。此外,这将有助于理解钙敏化药物的作用,这些药物与心肌TnC结合,并且已知能够增强心肌TnC激活心肌收缩的能力。

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