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肌钙蛋白动力学对 Ca2+介导的收缩调节和遗传性心肌病的意义。

Significance of troponin dynamics for Ca2+-mediated regulation of contraction and inherited cardiomyopathy.

机构信息

Department of Medicine, University of Illinois, Chicago, Illinois 60612, USA.

出版信息

J Biol Chem. 2012 Dec 7;287(50):42299-311. doi: 10.1074/jbc.M112.423459. Epub 2012 Oct 12.

Abstract

Ca(2+) dissociation from troponin causes cessation of muscle contraction by incompletely understood structural mechanisms. To investigate this process, regulatory site Ca(2+) binding in the NH(2)-lobe of subunit troponin C (TnC) was abolished by mutagenesis, and effects on cardiac troponin dynamics were mapped by hydrogen-deuterium exchange (HDX)-MS. The findings demonstrate the interrelationships among troponin's detailed dynamics, troponin's regulatory actions, and the pathogenesis of cardiomyopathy linked to troponin mutations. Ca(2+) slowed HDX up to 2 orders of magnitude within the NH(2)-lobe and the NH(2)-lobe-associated TnI switch helix, implying that Ca(2+) greatly stabilizes this troponin regulatory region. HDX of the TnI COOH terminus indicated that its known role in regulation involves a partially folded rather than unfolded structure in the absence of Ca(2+) and actin. Ca(2+)-triggered stabilization extended beyond the known direct regulatory regions: to the start of the nearby TnI helix 1 and to the COOH terminus of the TnT-TnI coiled-coil. Ca(2+) destabilized rather than stabilized specific TnI segments within the coiled-coil and destabilized a region not previously implicated in Ca(2+)-mediated regulation: the coiled-coil's NH(2)-terminal base plus the preceding TnI loop with which the base interacts. Cardiomyopathy-linked mutations clustered almost entirely within influentially dynamic regions of troponin, and many sites were Ca(2+)-sensitive. Overall, the findings demonstrate highly selective effects of regulatory site Ca(2+), including opposite changes in protein dynamics at opposite ends of the troponin core domain. Ca(2+) release triggers an intramolecular switching mechanism that propagates extensively within the extended troponin structure, suggests specific movements of the TnI inhibitory regions, and prominently involves troponin's dynamic features.

摘要

钙离子与肌钙蛋白的解离通过尚未完全了解的结构机制导致肌肉收缩停止。为了研究这个过程,通过突变使肌钙蛋白 C(TnC)亚基的氨基末端调节位点的钙离子结合被废除,并通过氘氢交换(HDX)-MS 映射心脏肌钙蛋白动力学的变化。研究结果表明肌钙蛋白的详细动力学、肌钙蛋白的调节作用以及与肌钙蛋白突变相关的心肌病的发病机制之间存在相互关系。钙离子在氨基末端和氨基末端相关的 TnI 开关螺旋内使 HDX 减慢了多达 2 个数量级,这表明钙离子极大地稳定了这个肌钙蛋白调节区域。TnI COOH 末端的 HDX 表明,在没有 Ca2+和肌动蛋白的情况下,其在调节中的已知作用涉及部分折叠而不是未折叠的结构。Ca2+-引发的稳定作用不仅限于已知的直接调节区域:扩展到附近的 TnI 螺旋 1 的起始处以及 TnT-TnI 卷曲螺旋的 TnI COOH 末端。Ca2+不仅使卷曲螺旋内的特定 TnI 片段失稳,而且使以前未涉及 Ca2+介导调节的区域失稳:卷曲螺旋的 NH2-末端基加上与基相互作用的前 TnI 环。与心肌病相关的突变几乎完全聚集在肌钙蛋白的影响动力学区域内,许多位点对 Ca2+敏感。总体而言,这些发现表明调节位点 Ca2+具有高度选择性的作用,包括肌钙蛋白核心结构域两端的蛋白质动力学的相反变化。钙离子释放触发了一个在扩展的肌钙蛋白结构内广泛传播的分子内开关机制,提示 TnI 抑制区域的特定运动,并突出了肌钙蛋白的动态特征。

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