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The myosin chaperone UNC-45 is organized in tandem modules to support myofilament formation in C. elegans

机译:肌球蛋白伴侣UNC-45以串联模块的形式组织,以支持秀丽隐杆线虫的肌丝形成。

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摘要

The UCS (UNC-45/CRO1/She4) chaperones play an evolutionarily conserved role in promoting myosin-dependent processes, including cytokinesis, endocytosis, RNA transport, and muscle development. To investigate the protein machinery orchestrating myosin folding and assembly, we performed a comprehensive analysis of Caenorhabditis elegans UNC-45. Our structural and biochemical data demonstrate that UNC-45 forms linear protein chains that offer multiple binding sites for cooperating chaperones and client proteins. Accordingly, Hsp70 and Hsp90, which bind to the TPR domain of UNC-45, could act in concert and with defined periodicity on captured myosin molecules. In vivo analyses reveal the elongated canyon of the UCS domain as a myosin-binding site and show that multimeric UNC-45 chains support organization of sarcomeric repeats. In fact, expression of transgenes blocking UNC-45 chain formation induces dominant-negative defects in the sarcomere structure and function of wild-type worms. Together, these findings uncover a filament assembly factor that directly couples myosin folding with myofilament formation.
机译:UCS(UNC-45 / CRO1 / She4)分子伴侣在促进依赖肌球蛋白的过程(包括胞质分裂,内吞作用,RNA转运和肌肉发育)中发挥了进化上保守的作用。为了调查蛋白质机器协调肌球蛋白的折叠和组装,我们对秀丽隐杆线虫UNC-45进行了全面的分析。我们的结构和生化数据表明,UNC-45形成线性蛋白链,可为伴侣蛋白和客户蛋白提供多个结合位点。因此,结合到UNC-45的TPR结构域的Hsp70和Hsp90可以在捕获的肌球蛋白分子上协同作用并具有确定的周期性。体内分析显示,UCS结构域的细长峡谷是肌球蛋白结合位点,并显示多聚UNC-45链支持肌节重复序列的组织。实际上,阻止UNC-45链形成的转基因表达诱导了野生型蠕虫的肌节结构和功能中的显性负性缺陷。总之,这些发现揭示了将肌球蛋白折叠与肌丝形成直接耦合的纤丝组装因子。

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