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Three-dimensional structure of the radial spokes reveals heterogeneity and interactions with dyneins in Chlamydomonas flagella

机译:径向辐条的三维结构揭示了衣藻鞭毛中的异质性和与动力蛋白的相互作用

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Radial spokes (RSs) play an essential role in the regulation of axonemal dynein activity and thus of ciliary and flagellar motility. However, few details are known about the complexes involved. Using cryo–electron tomography and subtomogram averaging, we visualized the three-dimensional structure of the radial spokes in Chlamydomonas flagella in unprecedented detail. Unlike many other species, Chlamydomonas has only two spokes per axonemal repeat, RS1 and RS2. Our data revealed previously uncharacterized features, including two-pronged spoke bases that facilitate docking to the doublet microtubules, and that inner dyneins connect directly to the spokes. Structures of wild type and the headless spoke mutant pf17 were compared to define the morphology and boundaries of the head, including a direct RS1-to-RS2 interaction. Although the overall structures of the spokes are very similar, we also observed some differences, corroborating recent findings about heterogeneity in the docking of RS1 and RS2. In place of a third radial spoke we found an uncharacterized, shorter electron density named “radial spoke 3 stand-in,” which structurally bears no resemblance to RS1 and RS2 and is unaltered in the pf17 mutant. These findings demonstrate that radial spokes are heterogeneous in structure and may play functionally distinct roles in axoneme regulation.
机译:ial状辐条(RSs)在调节轴突动力蛋白的活性以及因此在睫状和鞭毛运动中起着至关重要的作用。但是,有关所涉及的复合物的信息很少。使用冷冻电子断层扫描和子断层图平均,我们以前所未有的细节可视化了衣藻鞭毛flag状辐条的三维结构。与许多其他物种不同,衣藻每个轴突重复只有两个辐条,RS1和RS2。我们的数据揭示了以前未曾表征的特征,包括两叉状辐条底座,这些底座有助于对接双峰微管,而内部动力蛋白则直接连接到辐条。比较了野生型和无头辐条突变体pf17的结构,以定义头部的形态和边界,包括直接的RS1-RS2相互作用。尽管辐条的总体结构非常相似,但我们也观察到了一些差异,从而证实了有关RS1和RS2对接中异质性的最新发现。代替第三个径向辐条,我们发现了一个未表征的较短的电子密度,称为“径向辐条3替代”,其结构与RS1和RS2没有相似之处,并且在pf17突变体中未发生变化。这些发现表明radial状辐条在结构上是异质的,并且可能在轴突调节中发挥功能上不同的作用。

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