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钙与相邻肌钙蛋白分子结合对细肌丝-肌球蛋白亚片段1 MgATP酶活性的协同作用。

Cooperative effect of calcium binding to adjacent troponin molecules on the thin filament-myosin subfragment 1 MgATPase rate.

作者信息

Butters C A, Tobacman J B, Tobacman L S

机构信息

Department of Internal Medicine, The University of Iowa, Iowa City, Iowa 52242, USA.

出版信息

J Biol Chem. 1997 May 16;272(20):13196-202. doi: 10.1074/jbc.272.20.13196.

Abstract

The myosin subfragment 1 (S1) MgATPase rate was measured using thin filaments with known extents of Ca2+ binding controlled by varying the ratio of native cardiac troponin versus an inhibitory troponin with a mutation in the sole regulatory Ca2+ binding site of troponin C. Fractional MgATPase activation was less than the fraction of troponins that bound Ca2+, implying a cooperative effect of bound Ca2+ on cross-bridge cycling. Addition of phalloidin did not alter cooperative effects between bound Ca2+ molecules in the presence or absence of myosin S1. When the myosin S1 concentration was raised sufficiently to introduce cooperative myosin-myosin effects, lower Ca2+ concentrations were needed to activate the MgATPase rate. MgATPase activation remained less than Ca2+ binding, implying a true, not just an apparent, increase in Ca2+ affinity. MgATPase activation by Ca2+ was more cooperative than could be explained by cooperativeness of overall Ca2+ binding, the discrepancy between Ca2+ binding and MgATPase activation, or interactions between myosins. The results suggest the thin filament-myosin S1 MgATPase cycle requires calcium binding to adjacent troponin molecules and that this binding is cooperatively promoted by a single cycling cross-bridge. This mechanism is a potential explanation for Ca2+-mediated regulation of cross-bridge kinetics in muscle fibers.

摘要

使用细肌丝测量肌球蛋白亚片段1(S1)的MgATP酶活性,通过改变天然心肌肌钙蛋白与抑制性肌钙蛋白的比例来控制Ca2+结合程度,其中抑制性肌钙蛋白在肌钙蛋白C唯一的调节性Ca2+结合位点发生了突变。MgATP酶的部分激活小于结合Ca2+的肌钙蛋白部分,这意味着结合的Ca2+对横桥循环具有协同作用。在有或没有肌球蛋白S1的情况下,添加鬼笔环肽都不会改变结合的Ca2+分子之间的协同作用。当肌球蛋白S1浓度升高到足以引入协同的肌球蛋白-肌球蛋白效应时,激活MgATP酶活性所需的Ca2+浓度较低。MgATP酶的激活仍然小于Ca2+结合,这意味着Ca2+亲和力真正增加,而不仅仅是表观增加。Ca2+对MgATP酶的激活比总体Ca2+结合的协同性、Ca2+结合与MgATP酶激活之间的差异或肌球蛋白之间的相互作用所能解释的更具协同性。结果表明,细肌丝-肌球蛋白S1的MgATP酶循环需要Ca2+与相邻的肌钙蛋白分子结合,并且这种结合由单个循环的横桥协同促进。这种机制可能解释了Ca2+介导的肌肉纤维横桥动力学调节。

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