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Unfixed cryosections of striated muscle to study dynamic molecular events.

机译:横纹肌的未固定冷冻切片用于研究动态分子事件。

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摘要

The structures of the actin and myosin filaments of striated muscle have been studied extensively in the past by sectioning of fixed specimens. However, chemical fixation alters molecular details and prevents biochemically induced structural changes. To overcome these problems, we investigate here the potential of cryosectioning unfixed muscle. In cryosections of relaxed, unfixed specimens, individual myosin filaments displayed the characteristic helical organization of detached cross-bridges, but the filament lattice had disintegrated. To preserve both the filament lattice and the molecular structure of the filaments, we decided to section unfixed rigor muscle, stabilized by actomyosin cross-bridges. The best sections showed periodic, angled cross-bridges attached to actin and their Fourier transforms displayed layer lines similar to those in x-ray diffraction patterns of rigor muscle. To preserve relaxed filaments in their original lattice, unfixed sections of rigor muscle were picked up on a grid and relaxed before negative staining. The myosin and actin filaments showed the characteristic helical arrangements of detached cross-bridges and actin subunits, and Fourier transforms were similar to x-ray patterns of relaxed muscle. We conclude that the rigor structure of muscle and the ability of the filament lattice to undergo the rigor-relaxed transformation can be preserved in unfixed cryosections. In the future, it should be possible to carry out dynamic studies of active sacromeres by cryo-electron microscopy.
机译:过去通过固定标本的切片对横纹肌肌动蛋白和肌球蛋白丝的结构进行了广泛的研究。但是,化学固定会改变分子的细节并阻止生物化学诱导的结构变化。为了克服这些问题,我们在这里研究冷冻切片未固定肌肉的潜力。在松弛的,未固定的标本的冷冻切片中,个别的肌球蛋白细丝显示出分离的跨桥的特征性螺旋结构,但细丝的晶格已分解。为了保留细丝的晶格和细丝的分子结构,我们决定对未固定的刚性肌肉进行切片,并通过肌动球蛋白横桥来稳定。最好的部分显示出周期性的,成角度的交叉桥连接到肌动蛋白上,其傅立叶变换显示的层线类似于严格肌肉的X射线衍射图。为了将松弛的细丝保留在其原始晶格中,在网格上拾取未固定的刚性肌肉部分,并在阴性染色之前将其松弛。肌球蛋白和肌动蛋白丝表现出分离的跨桥和肌动蛋白亚基的特征性螺旋排列,傅立叶变换类似于松弛肌肉的X射线图。我们得出的结论是,在未固定的冷冻切片中,可以保留肌肉的严格结构和细丝晶格经历严格放松的转换的能力。将来,应该有可能通过冷冻电子显微镜对活性鼠尾草进行动态研究。

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