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A Highlights from MBoC Selection: The CSC is required for complete radial spoke assembly and wild-type ciliary motility

机译:MBoC选择的重点:完整的辐条辐条组装和野生型睫状运动需要CSC

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摘要

The ubiquitous calcium binding protein, calmodulin (CaM), plays a major role in regulating the motility of all eukaryotic cilia and flagella. We previously identified a CaM and Spoke associated Complex (CSC) and provided evidence that this complex mediates regulatory signals between the radial spokes and dynein arms. We have now used an artificial microRNA (amiRNA) approach to reduce expression of two CSC subunits in Chlamydomonas. For all amiRNA mutants, the entire CSC is lacking or severely reduced in flagella. Structural studies of mutant axonemes revealed that assembly of radial spoke 2 is defective. Furthermore, analysis of both flagellar beating and microtubule sliding in vitro demonstrates that the CSC plays a critical role in modulating dynein activity. Our results not only indicate that the CSC is required for spoke assembly and wild-type motility, but also provide evidence for heterogeneity among the radial spokes.
机译:普遍存在的钙结合蛋白钙调蛋白(CaM)在调节所有真核纤毛和鞭毛的运动中起主要作用。我们之前确定了一个CaM和与辐条相关的复合物(CSC),并提供了证明该复合物在media骨辐和动力蛋白臂之间介导调节信号的证据。现在,我们已经使用人工microRNA(amiRNA)方法来减少衣藻中两个CSC亚基的表达。对于所有amiRNA突变体,鞭毛中缺少或严重降低了整个CSC。突变型轴突的结构研究表明,辐射状辐条2的组装是有缺陷的。此外,对鞭毛跳动和微管滑动的体外分析表明,CSC在调节动力蛋白的活性中起关键作用。我们的结果不仅表明CSC是辐条装配和野生型运动所必需的,而且还为the骨辐条之间的异质性提供了证据。

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