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首页> 外文期刊>Cell Reports >Interplay between Ciliary Ultrastructure and IFT-Train Dynamics Revealed by Single-Molecule Super-resolution Imaging
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Interplay between Ciliary Ultrastructure and IFT-Train Dynamics Revealed by Single-Molecule Super-resolution Imaging

机译:单分子超分辨率成像揭示睫状超微结构和IFT训练动力学之间的相互作用。

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Summary Cilia are built and maintained by intraflagellar transport (IFT), driving IFT trains back and forth along the ciliary axoneme. How IFT brings about the intricate ciliary structure and how this structure affects IFT are not well understood. We identify, using single-molecule super-resolution imaging of IFT components in living C.?elegans , ciliary subdomains, enabling correlation of IFT-train dynamics to ciliary ultra-structure. In the transition zone, IFT dynamics are impaired, resulting in frequent pauses. At the ciliary base and tip, IFT trains show intriguing turnaround dynamics. Surprisingly, deletion of IFT motor kinesin-II not only affects IFT-train dynamics but also alters ciliary structure. Super-resolution imaging in these mutant animals suggests that the arrangement of IFT trains with respect to the axonemal microtubules is different than in wild-type animals. Our results reveal a complex, mutual interplay between ciliary ultrastructure and IFT-train dynamics, highlighting the importance of physical cues in the control of IFT dynamics.
机译:总结纤毛是由鞭毛内运输(IFT)建造和维护的,沿着纤毛轴突来回驱动IFT火车。 IFT如何产生复杂的睫状结构,以及该结构如何影响IFT尚不清楚。我们使用活的线虫纤毛亚结构域中的IFT组件使用单分子超分辨率成像,从而确定IFT列车动力学与纤毛超微结构的相关性。在过渡区域,IFT动态会受到影响,从而导致频繁的停顿。在睫毛根部和尖端,IFT火车表现出有趣的转向动态。出乎意料的是,IFT马达驱动蛋白-II的缺失不仅影响IFT火车动力学,而且改变睫状结构。这些突变动物的超分辨率成像表明,相对于轴突微管,IFT序列的排列与野生型动物不同。我们的研究结果揭示了睫状超微结构和IFT训练动力学之间复杂的相互作用,突显了物理提示在控制IFT动力学中的重要性。

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