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在冷冻水合薄片中观察到的骨骼肌中肌动蛋白丝与肌球蛋白丝之间的相互作用。

Interactions between actin and myosin filaments in skeletal muscle visualized in frozen-hydrated thin sections.

作者信息

Trus B L, Steven A C, McDowall A W, Unser M, Dubochet J, Podolsky R J

机构信息

Division of Computer Research and Technology, National Institute of Arthritis, Musculoskeletal and Skin Diseases, Bethesda, Maryland 20892.

出版信息

Biophys J. 1989 Apr;55(4):713-24. doi: 10.1016/S0006-3495(89)82870-X.

Abstract

For the purpose of determining net interactions between actin and myosin filaments in muscle cells, perhaps the single most informative view of the myofilament lattice is its averaged axial projection. We have studied frozen-hydrated transverse thin sections with the goal of obtaining axial projections that are not subject to the limitations of conventional thin sectioning (suspect preservation of native structure) or of equatorial x-ray diffraction analysis (lack of experimental phases). In principle, good preservation of native structure may be achieved with fast freezing, followed by low-dose electron imaging of unstained vitrified cryosections. In practice, however, cryosections undergo large-scale distortions, including irreversible compression; furthermore, phase contrast imaging results in a nonlinear relationship between the projected density of the specimen and the optical density of the micrograph. To overcome these limitations, we have devised methods of image restoration and generalized correlation averaging, and applied them to cryosections of rabbit psoas fibers in both the relaxed and rigor states. Thus visualized, myosin filaments appear thicker than actin filaments by a much smaller margin than in conventional thin sections, and particularly so for rigor muscle. This may result from a significant fraction of the myosin S1-cross-bridges averaging out in projection and thus contributing only to the baseline of projected density. Entering rigor incurs a loss of density from an annulus around the myosin filament, with a compensating accumulation of density around the actin filament. This redistribution of mass represents attachment of the fraction of cross-bridges that are visible above background. Myosin filaments in the "nonoverlap" zone appear to broaden on entering rigor, suggesting that on deprivation of ATP, cross-bridges in situ move outwards even without actin in their immediate proximity.

摘要

为了确定肌肉细胞中肌动蛋白和肌球蛋白丝之间的净相互作用,肌丝晶格最具信息量的单一视图或许是其平均轴向投影。我们研究了冷冻水合横向薄片,目的是获得不受传统薄片切片(对天然结构保存存疑)或赤道X射线衍射分析(缺乏实验相位)限制的轴向投影。原则上,通过快速冷冻,随后对未染色的玻璃化冷冻切片进行低剂量电子成像,可以实现对天然结构的良好保存。然而,在实际操作中,冷冻切片会经历大规模变形,包括不可逆压缩;此外,相衬成像导致标本的投影密度与显微照片的光学密度之间呈非线性关系。为了克服这些限制,我们设计了图像恢复和广义相关平均的方法,并将其应用于处于松弛和僵直状态的兔腰大肌纤维的冷冻切片。通过这种方式可视化后,肌球蛋白丝看起来比肌动蛋白丝粗,但比传统薄片切片中的差异小得多,对于僵直肌肉尤其如此。这可能是由于很大一部分肌球蛋白S1横桥在投影中平均化,因此仅对投影密度的基线有贡献。进入僵直状态会导致肌球蛋白丝周围的环形区域密度降低,而肌动蛋白丝周围则有密度的补偿性积累。这种质量的重新分布代表了高于背景可见的那部分横桥的附着。“非重叠”区域的肌球蛋白丝在进入僵直状态时似乎变宽了,表示在缺乏ATP的情况下,原位的横桥即使在其紧邻区域没有肌动蛋白时也会向外移动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c96/1330555/adfdd11e6a83/biophysj00141-0120-a.jpg

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