首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Actin Filament Bundling by Fimbrin Is Important for Endocytosis Cytokinesis and Polarization in Fission Yeast
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Actin Filament Bundling by Fimbrin Is Important for Endocytosis Cytokinesis and Polarization in Fission Yeast

机译:Fimbrin捆绑的肌动蛋白丝对内吞胞质分裂和分裂酵母中的极化非常重要

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摘要

Through the coordinated action of diverse actin-binding proteins, cells simultaneously assemble actin filaments with distinct architectures and dynamics to drive different processes. Actin filament cross-linking proteins organize filaments into higher order networks, although the requirement of cross-linking activity in cells has largely been assumed rather than directly tested. Fission yeast Schizosaccharomyces pombe assembles actin into three discrete structures: endocytic actin patches, polarizing actin cables, and the cytokinetic contractile ring. The fission yeast filament cross-linker fimbrin Fim1 primarily localizes to Arp2/3 complex-nucleated branched filaments of the actin patch and by a lesser amount to bundles of linear antiparallel filaments in the contractile ring. It is unclear whether Fim1 associates with bundles of parallel filaments in actin cables. We previously discovered that a principal role of Fim1 is to control localization of tropomyosin Cdc8, thereby facilitating cofilin-mediated filament turnover. Therefore, we hypothesized that the bundling ability of Fim1 is dispensable for actin patches but is important for the contractile ring and possibly actin cables. By directly visualizing actin filament assembly using total internal reflection fluorescence microscopy, we determined that Fim1 bundles filaments in both parallel and antiparallel orientations and efficiently bundles Arp2/3 complex-branched filaments in the absence but not the presence of actin capping protein. Examination of cells exclusively expressing a truncated version of Fim1 that can bind but not bundle actin filaments revealed that bundling activity of Fim1 is in fact important for all three actin structures. Therefore, fimbrin Fim1 has diverse roles as both a filament “gatekeeper” and as a filament cross-linker.
机译:通过多种肌动蛋白结合蛋白的协同作用,细胞可以同时组装具有不同结构和动力学的肌动蛋白丝,从而驱动不同的过程。肌动蛋白细丝交联蛋白将细丝组织成更高阶的网络,尽管在很大程度上假设了对细胞中交联活性的要求,而不是直接进行了测试。裂变酵母裂殖酵母将肌动蛋白组装成三个离散的结构:内吞肌动蛋白补丁,极化肌动蛋白电缆和细胞动力学收缩环。裂变酵母丝交联剂fimbrin Fim1主要位于肌动蛋白贴片的Arp2 / 3复核分支支丝,而较少出现在收缩环中的线性反平行丝束中。尚不清楚Fim1是否与肌动蛋白电缆中的平行细丝束相关联。我们以前发现,Fim1的主要作用是控制原肌球蛋白Cdc8的定位,从而促进cofilin介导的细丝更新。因此,我们假设Fim1的捆绑能力对于肌动蛋白补丁是必不可少的,但对收缩环和可能的肌动蛋白电缆却很重要。通过使用全内反射荧光显微镜直接可视化肌动蛋白丝组件,我们确定Fim1在平行和反平行方向上束丝,并在不存在肌动蛋白加帽蛋白的情况下有效地束缚Arp2 / 3复合支丝。检查专门表达截短版本的Fim1可以结合但不能束缚肌动蛋白丝的细胞,发现Fim1的束缚活性实际上对于所有三个肌动蛋白结构都很重要。因此,fimbrin Fim1作为细丝“关守”和细丝交联剂均具有多种作用。

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