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横纹肌中横桥相互作用的高压电子显微镜观察

High-voltage electron microscopy of crossbridge interactions in striated muscle.

作者信息

Freundlich A, Luther P K, Squire J M

出版信息

J Muscle Res Cell Motil. 1980 Sep;1(3):321-43. doi: 10.1007/BF00711934.

Abstract

In order to investigate the geometry of the interactions which myosin molecules make with actin filaments we have studied thick (0.2--0.5 micrometer) transverse sections of striated muscles in the 1 Me V electron microscope at Imperial College. Sections obtained from fixed relaxed frog sartorius muscle and both fixed relaxed and fixed rigor insect flight muscles, show regular electron opaque features between the thick and thin filament profiles. These are thought to be the overlapping images of the many levels of myosin heads that occur in such sections. From the appearances of these images, together with studies of thin transverse sections, it appears that of the possible interactions which one myosin molecule can make, namely that its two component heads interact with the same thin filament or with two different thin filaments, it is the former interaction (both heads on the same filament) which is predominant. Nevertheless appearances have been seen similar to those expected if an interaction of one molecule with two thin filaments occurs. It is concluded that both single filament and two filament interactions can occur depending on the steric convenience of the available actin subunits, but that the single filament interaction occurs in the majority of cases in the muscle states we have studied. Finally it is shown that the myosin filament profiles seen in thick transverse sections may be a very misleading guide to thick filament structure because of the influence which the myosin crossbridge have on the appearance of the profiles.

摘要

为了研究肌球蛋白分子与肌动蛋白丝相互作用的几何结构,我们在帝国理工学院用1兆电子伏电子显微镜研究了横纹肌的厚(0.2 - 0.5微米)横切片。从固定的松弛蛙缝匠肌以及固定的松弛和固定的强直昆虫飞行肌获得的切片,在粗、细肌丝轮廓之间显示出规则的电子不透明特征。这些被认为是在此类切片中出现的许多肌球蛋白头部水平的重叠图像。从这些图像的外观以及对薄横切片的研究来看,似乎在肌球蛋白分子可能的相互作用中,即其两个组成头部与同一根细肌丝或与两根不同的细肌丝相互作用,前者的相互作用(两个头部在同一根肌丝上)占主导。然而,也观察到了类似于一个分子与两根细肌丝相互作用时所预期的外观。得出的结论是,单丝和双丝相互作用都可能发生,这取决于可用肌动蛋白亚基的空间便利性,但在我们研究的肌肉状态下,单丝相互作用在大多数情况下都会发生。最后表明,由于肌球蛋白横桥对轮廓外观的影响,在厚横切片中看到的肌球蛋白丝轮廓可能是对粗丝结构极具误导性的指引。

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