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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Myosin Mg-ATPase of molluscan muscles is slightly activated by F-actin under catch state in vitro.
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Myosin Mg-ATPase of molluscan muscles is slightly activated by F-actin under catch state in vitro.

机译:在体外捕获状态下,F-肌动蛋白会轻微激活软体动物肌肉的肌球蛋白Mg-ATPase。

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Molluscan muscle twitchin, a titin/connectin-related giant protein, regulates interactions between actin and myosin filaments at low Ca(2+) concentrations. When it is dephosphorylated, actin filaments tightly bind to myosin filaments, resulting in the catch state known as the state of high passive tension with very low energy consumption. Yet when twitchin is phosphorylated actin filaments detach from the myosin filaments, resulting in relaxation of the catch. Here, steady-state Mg-ATPase activities of purified myosin were measured under various conditions: without twitchin, with dephosphorylated twitchin, or with phosphorylated twitchin; with or without phalloidin-stabilized F-actin; and at various Ca(2+) concentrations. At low Ca(2+) concentration, Mg-ATPase was activated by F-actin only in the presence of dephosphorylated twitchin (catch state). The activation was about two orders lower than that fully activated by Ca(2+) and F-actin. In the absence of F-actin, twitchin and its phosphorylation state did not affect Mg-ATPase activities in any of the conditions we tested. Based on these results, we propose a molecular mechanism for the catch, where twitchin alone does not interact with the myosin catalytic motor domain but its complex with F-actin does, forming the bridge between actin and myosin filaments and the myosin slowly hydrolyzes Mg-ATP in the catch state.
机译:软体动物肌肉twitchin,与titin / connectin相关的巨型蛋白,在低Ca(2+)浓度下调节肌动蛋白和肌球蛋白丝之间的相互作用。当它被去磷酸化时,肌动蛋白丝与肌球蛋白丝紧密结合,导致捕获状态,即所谓的高被动张力状态,能耗非常低。然而,当维希菌素被磷酸化时,肌动蛋白丝会从肌球蛋白丝上脱离,从而导致捕获物松弛。在此,在各种条件下测量了纯化的肌球蛋白的稳态Mg-ATPase活性:不带提维琴,带去磷酸化的提维琴或带磷酸化的提维琴;有或没有鬼笔环肽稳定的F-肌动蛋白;以及各种Ca(2+)浓度。在低Ca(2+)浓度下,Mg-ATPase仅在去磷酸化的线虫(捕获状态)存在时被F-肌动蛋白激活。激活大约比Ca(2+)和F-肌动蛋白完全激活的激活低两个数量级。在不存在F-肌动蛋白的情况下,在我们测试的任何条件下,链霉菌素及其磷酸化状态均不影响Mg-ATPase活性。根据这些结果,我们提出了一种捕获的分子机制,其中单独的twitchin不会与肌球蛋白催化运动域相互作用,但其与F-肌动蛋白的复合物会相互作用,从而形成肌动蛋白和肌球蛋白丝之间的桥梁,而肌球蛋白会缓慢水解Mg- ATP处于捕获状态。

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