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钙离子和三磷酸腺苷(ATP)在钙离子调节的肌球蛋白丝中诱导的结构变化。

Structural changes induced in Ca2+-regulated myosin filaments by Ca2+ and ATP.

作者信息

Frado L L, Craig R

机构信息

Department of Cell Biology, University of Massachusetts Medical School, Worcester 01655.

出版信息

J Cell Biol. 1989 Aug;109(2):529-38. doi: 10.1083/jcb.109.2.529.

Abstract

We have used electron microscopy and proteolytic susceptibility to study the structural basis of myosin-linked regulation in synthetic filaments of scallop striated muscle myosin. Using papain as a probe of the structure of the head-rod junction, we find that this region of myosin is approximately five times more susceptible to proteolytic attack under activating (ATP/high Ca2+) or rigor (no ATP) conditions than under relaxing conditions (ATP/low Ca2+). A similar result was obtained with native myosin filaments in a crude homogenate of scallop muscle. Proteolytic susceptibility under conditions in which ADP or adenosine 5'-(beta, gamma-imidotriphosphate) (AMPPNP) replaced ATP was similar to that in the absence of nucleotide. Synthetic myosin filaments negatively stained under relaxing conditions showed a compact structure, in which the myosin cross-bridges were close to the filament backbone and well ordered, with a clear 14.5-nm axial repeat. Under activating or rigor conditions, the cross-bridges became clumped and disordered and frequently projected further from the filament backbone, as has been found with native filaments; when ADP or AMPPNP replaced ATP, the cross-bridges were also disordered. We conclude (a) that Ca2+ and ATP affect the affinity of the myosin cross-bridges for the filament backbone or for each other; (b) that the changes observed in the myosin filaments reflect a property of the myosin molecules alone, and are unlikely to be an artifact of negative staining; and (c) that the ordered structure occurs only in the relaxed state, requiring both the presence of hydrolyzed ATP on the myosin heads and the absence of Ca2+.

摘要

我们利用电子显微镜和蛋白水解敏感性来研究扇贝横纹肌肌球蛋白合成丝中肌球蛋白相关调节的结构基础。使用木瓜蛋白酶作为头部-杆部连接处结构的探针,我们发现,在激活(ATP/高Ca2+)或僵直(无ATP)条件下,肌球蛋白的该区域对蛋白水解攻击的敏感性比在松弛条件(ATP/低Ca2+)下高约五倍。在扇贝肌肉的粗匀浆中,天然肌球蛋白丝也得到了类似结果。用ADP或腺苷5'-(β,γ-亚氨基三磷酸)(AMPPNP)替代ATP时的蛋白水解敏感性与无核苷酸时相似。在松弛条件下进行负染色的合成肌球蛋白丝呈现出紧密结构,其中肌球蛋白横桥靠近丝主干且排列有序,轴向重复间距为清晰的14.5纳米。在激活或僵直条件下,横桥会聚集且无序,并且常常从丝主干伸出更远,天然丝也有此现象;当ADP或AMPPNP替代ATP时,横桥同样无序。我们得出以下结论:(a)Ca2+和ATP影响肌球蛋白横桥对丝主干或彼此的亲和力;(b)在肌球蛋白丝中观察到的变化仅反映肌球蛋白分子的特性,不太可能是负染色的假象;(c)有序结构仅在松弛状态下出现,需要肌球蛋白头部存在水解的ATP且不存在Ca2+。

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