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通过双折射和X射线衍射测量研究去膜肌纤维中的肌球蛋白横桥取向。

Myosin crossbridge orientation in demembranated muscle fibres studied by birefringence and X-ray diffraction measurements.

作者信息

Peckham M, Irving M

机构信息

Department of Biophysics, Cell and Molecular Biology, King's College London, U.K.

出版信息

J Mol Biol. 1989 Nov 5;210(1):113-26. doi: 10.1016/0022-2836(89)90294-5.

Abstract

Muscle contraction is generally thought to involve changes in the orientation of myosin crossbridges during their ATP-driven cyclical interaction with actin. We have investigated crossbridge orientation in equilibrium states of the crossbridge cycle in demembranated fibres of frog and rabbit muscle, using a novel combination of techniques: birefringence and X-ray diffraction. Muscle birefringence is sensitive to both crossbridge orientation and the transverse spacing of the contractile filament lattice. The latter was determined from the equatorial X-ray diffraction pattern, allowing accurate characterization of the orientation component of birefringence changes. We found that this component decreased when relaxed muscle fibres were put into rigor at rest length, and when either the ionic strength or temperature of relaxed fibres was lowered. In each case the birefringence decrease was accompanied by an increase in the intensity of the (1,1) equatorial X-ray reflection relative to that of the (1,0) reflection. When fibres that had been stretched largely to eliminate overlap between actin- and myosin-containing filaments were put into rigor, there was no change in the orientation component of the birefringence. When isolated myosin subfragment-1 was bound to these rigor fibres, the orientation component of the birefringence increased. The birefringence changes at rest length are likely to be due to changes in the orientation of myosin crossbridges, and in particular of the globular head region of the myosin molecules. In relaxed fibres from rabbit muscle, at 100 mM ionic strength, 15 degrees C, the long axis of the heads appears to be relatively well aligned with the filament axis. When fibres are put into rigor, or the temperature or ionic strength is lowered, the degree of alignment decreases and there is a transfer of crossbridge mass towards the actin-containing filaments.

摘要

肌肉收缩通常被认为涉及肌球蛋白横桥在其由ATP驱动的与肌动蛋白的周期性相互作用过程中的方向变化。我们使用双折射和X射线衍射等技术的新组合,研究了青蛙和兔子肌肉去膜纤维横桥循环平衡状态下的横桥方向。肌肉双折射对横桥方向和收缩丝晶格的横向间距都很敏感。后者由赤道X射线衍射图谱确定,从而能够准确表征双折射变化的方向成分。我们发现,当松弛的肌肉纤维在静息长度下进入僵直状态时,以及当松弛纤维的离子强度或温度降低时,该成分会降低。在每种情况下,双折射降低都伴随着相对于(1,0)反射,(1,1)赤道X射线反射强度的增加。当已被大幅拉伸以消除含肌动蛋白和肌球蛋白的细丝之间重叠的纤维进入僵直状态时,双折射的方向成分没有变化。当分离的肌球蛋白亚片段-1与这些僵直纤维结合时,双折射的方向成分增加。静息长度下的双折射变化可能是由于肌球蛋白横桥方向的变化,特别是肌球蛋白分子球状头部区域方向的变化。在兔肌肉的松弛纤维中,在100 mM离子强度、15℃时,头部的长轴似乎与细丝轴相对较好地对齐。当纤维进入僵直状态,或温度或离子强度降低时,对齐程度降低,并且横桥质量向含肌动蛋白的细丝转移。

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