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肌球蛋白杆的替代性S2铰链区域影响肌原纤维结构和肌球蛋白动力学。

Alternative S2 hinge regions of the myosin rod affect myofibrillar structure and myosin kinetics.

作者信息

Miller Mark S, Dambacher Corey M, Knowles Aileen F, Braddock Joan M, Farman Gerrie P, Irving Thomas C, Swank Douglas M, Bernstein Sanford I, Maughan David W

机构信息

Department of Molecular Physiology and Biophysics, University of Vermont, Burlington, Vermont, USA.

出版信息

Biophys J. 2009 May 20;96(10):4132-43. doi: 10.1016/j.bpj.2009.02.034.

Abstract

The subfragment 2/light meromyosin "hinge" region has been proposed to significantly contribute to muscle contraction force and/or speed. Transgenic replacement of the endogenous fast muscle isovariant hinge A (exon 15a) in Drosophila melanogaster indirect flight muscle with the slow muscle hinge B (exon 15b) allows examination of the structural and functional changes when only this region of the myosin molecule is different. Hinge B was previously shown to increase myosin rod length, increase A-band and sarcomere length, and decrease flight performance compared to hinge A. We applied additional measures to these transgenic lines to further evaluate the consequences of modifying this hinge region. Structurally, the longer A-band and sarcomere lengths found in the hinge B myofibrils appear to be due to the longitudinal addition of myosin heads. Functionally, hinge B, although a significant distance from the myosin catalytic domain, alters myosin kinetics in a manner consistent with this region increasing myosin rod length. These structural and functional changes combine to decrease whole fly wing-beat frequency and flight performance. Our results indicate that this hinge region plays an important role in determining myosin kinetics and in regulating thick and thin filament lengths as well as sarcomere length.

摘要

肌球蛋白亚片段2/轻酶解肌球蛋白的“铰链”区域被认为对肌肉收缩力和/或速度有显著贡献。将果蝇间接飞行肌中的内源性快肌同工型铰链A(外显子15a)用慢肌铰链B(外显子15b)进行转基因替换,使得在肌球蛋白分子只有这一区域不同时,能够研究其结构和功能的变化。与铰链A相比,先前研究表明铰链B会增加肌球蛋白杆长度、增加A带和肌节长度,并降低飞行性能。我们对这些转基因品系采用了额外的检测方法,以进一步评估改变这个铰链区域的后果。在结构上,铰链B肌原纤维中较长的A带和肌节长度似乎是由于肌球蛋白头部的纵向增加。在功能上,铰链B虽然与肌球蛋白催化结构域有一定距离,但以一种与该区域增加肌球蛋白杆长度相一致的方式改变了肌球蛋白动力学。这些结构和功能变化共同导致整个果蝇翅膀拍击频率和飞行性能下降。我们的结果表明,这个铰链区域在决定肌球蛋白动力学以及调节粗细肌丝长度和肌节长度方面起着重要作用。

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