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A Highlights from MBoC Selection: The CSC connects three major axonemal complexes involved in dynein regulation

机译:MBoC选择的亮点:CSC连接参与动力蛋白调节的三种主要轴索复合物

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Motile cilia and flagella are highly conserved organelles that play important roles in human health and development. We recently discovered a calmodulin- and spoke-associ-ated complex (CSC) that is required for wild-type motility and for the stable assembly of a subset of radial spokes. Using cryo–electron tomography, we present the first structure-based localization model of the CSC. Chlamydomonas flagella have two full-length radial spokes, RS1 and RS2, and a shorter RS3 homologue, the RS3 stand-in (RS3S). Using newly developed techniques for analyzing samples with structural heterogeneity, we demonstrate that the CSC connects three major axonemal complexes involved in dynein regulation: RS2, the nexin–dynein regulatory complex (N-DRC), and RS3S. These results provide insights into how signals from the radial spokes may be transmitted to the N-DRC and ultimately to the dynein motors. Our results also indicate that although structurally very similar, RS1 and RS2 likely serve different functions in regulating flagellar motility.
机译:运动纤毛和鞭毛是高度保守的细胞器,它们在人类健康和发展中起重要作用。我们最近发现了钙调蛋白和辐条相关复合物(CSC),这是野生型运动性和子午线辐条子集的稳定组装所必需的。使用低温电子断层扫描,我们介绍了CSC的第一个基于结构的定位模型。衣藻鞭毛具有两个全长放射状辐条RS1和RS2,以及较短的RS3同源物,即RS3替代品(RS3S)。使用最新开发的技术分析具有结构异质性的样品,我们证明了CSC连接了涉及动力蛋白调控的三个主要轴突复合物:RS2,神经毒素-动力蛋白调控复合物(N-DRC)和RS3S。这些结果提供了关于如何将径向辐条的信号传输到N-DRC以及最终传输到电动马达的见解。我们的研究结果还表明,尽管RS1和RS2在结构上非常相似,但它们在调节鞭毛运动方面可能发挥不同的作用。

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