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The cargo-binding domain regulates structure and activity of myosin 5

机译:货物绑定域调节肌球蛋白5的结构和活性。

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Myosin 5 is a two-headed motor protein that moves cargoes along actin filaments(1,2). Its tail ends in paired globular tail domains (GTDs) thought to bind cargo(3). At nanomolar calcium levels, actin-activated ATPase is low and the molecule is folded. Micromolar calcium concentrations activate ATPase and the molecule unfolds(3-6). Here we describe the structure of folded myosin and the GTD's role in regulating activity. Electron microscopy shows that the two heads lie either side of the tail, contacting the GTDs at a lobe of the motor domain (similar to Pro 117 - Pro 137) that contains conserved acidic side chains, suggesting ionic interactions between motor domain and GTD. Myosin 5 heavy meromyosin, a constitutively active fragment lacking the GTDs, is inhibited and folded by a dimeric GST - GTD fusion protein. Motility assays reveal that at nanomolar calcium levels heavy meromyosin moves robustly on actin filaments whereas few myosins bind or move. These results combine to show that with no cargo, the GTDs bind in an intramolecular manner to the motor domains, producing an inhibited and compact structure that binds weakly to actin and allows the molecule to recycle towards new cargoes.
机译:肌球蛋白5是一种双向运动蛋白,可沿肌动蛋白丝移动货物(1,2)。它的尾端以成对的球形尾域(GTD)为末端,被认为与货物绑定(3)。在纳摩尔钙水平下,肌动蛋白激活的ATPase低,分子被折叠。钙的微摩尔浓度会激活ATPase并使其展开(3-6)。在这里,我们描述了折叠的肌球蛋白的结构以及GTD在调节活性中的作用。电子显微镜显示,两个头位于尾巴的任一侧,在含有保守的酸性侧链的运动域(类似于Pro 117-Pro 137)的叶上与GTD接触,表明运动域与GTD之间存在离子相互作用。肌球蛋白5重肌球蛋白(一种缺乏GTD的组成性活性片段)被二聚体GST-GTD融合蛋白抑制并折叠。动力分析表明,在纳摩尔钙水平上,重肌球蛋白在肌动蛋白丝上强烈移动,而很少的肌球蛋白结合或移动。这些结果结合起来表明,在没有货物的情况下,GTD以分子内方式与运动域结合,产生了抑制性且致密的结构,该结构与肌动蛋白的结合较弱,并使分子可以循环用于新的货物。

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