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肌球蛋白S2的起源通过运动结构域的方位滚动追踪肌动蛋白上强结合的进化。

Myosin S2 origins track evolution of strong binding on actin by azimuthal rolling of motor domain.

作者信息

Arakelian Claudia, Warrington Anthony, Winkler Hanspeter, Perz-Edwards R J, Reedy Michael K, Taylor Kenneth A

机构信息

Institute of Molecular Biophysics and Department of Biological Science, Florida State University, Tallahassee, Florida.

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina.

出版信息

Biophys J. 2015 Mar 24;108(6):1495-1502. doi: 10.1016/j.bpj.2014.12.059.

Abstract

Myosin crystal structures have given rise to the swinging lever arm hypothesis, which predicts a large axial tilt of the lever arm domain during the actin-attached working stroke. Previous work imaging the working stroke in actively contracting, fast-frozen Lethocerus muscle confirmed the axial tilt; but strongly bound myosin heads also showed an unexpected azimuthal slew of the lever arm around the thin filament axis, which was not predicted from known crystal structures. We hypothesized that an azimuthal reorientation of the myosin motor domain on actin during the weak-binding to strong-binding transition could explain the lever arm slew provided that myosin's α-helical coiled-coil subfragment 2 (S2) domain emerged from the thick filament backbone at a particular location. However, previous studies did not adequately resolve the S2 domain. Here we used electron tomography of rigor muscle swollen by low ionic strength to pull S2 clear of the thick filament backbone, thereby revealing the azimuth of its point of origin. The results show that the azimuth of S2 origins of those rigor myosin heads, bound to the actin target zone of actively contracting muscle, originate from a restricted region of the thick filament. This requires an azimuthal reorientation of the motor domain on actin during the weak to strong transition.

摘要

肌球蛋白晶体结构催生了摆动杠杆臂假说,该假说预测在与肌动蛋白结合的工作冲程中,杠杆臂结构域会发生较大的轴向倾斜。此前对活跃收缩的、快速冷冻的田鳖肌肉工作冲程进行成像的研究证实了轴向倾斜;但紧密结合的肌球蛋白头部还显示出杠杆臂围绕细肌丝轴意外的方位角扭转,这是已知晶体结构所无法预测的。我们推测,在从弱结合到强结合的转变过程中,肌球蛋白运动结构域在肌动蛋白上的方位角重新定向可以解释杠杆臂的扭转,前提是肌球蛋白的α螺旋卷曲螺旋亚片段2(S2)结构域在特定位置从粗肌丝主干中伸出。然而,之前的研究并未充分解析S2结构域。在这里,我们利用低离子强度肿胀的僵直肌肉的电子断层扫描技术,将S2从粗肌丝主干中分离出来,从而揭示其起始点的方位角。结果表明,那些与活跃收缩肌肉的肌动蛋白靶区结合的僵直肌球蛋白头部的S2起始方位角,源自粗肌丝的一个受限区域。这就要求运动结构域在从弱到强的转变过程中在肌动蛋白上进行方位角重新定向。

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