首页> 外文期刊>Journal of molecular cell biology >The concerted actions of Tip1/CLIP-170, Klp5/Kinesin-8, and Alp14/XMAP215 regulate microtubule catastrophe at the cell end
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The concerted actions of Tip1/CLIP-170, Klp5/Kinesin-8, and Alp14/XMAP215 regulate microtubule catastrophe at the cell end

机译:Tip1 / Clip-170,KLP5 / Kinesin-8和ALP14 / XMAP215的协同作用调节细胞端的微管灾难

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Spatial regulation of microtubule catastrophe is important for controlling microtubule length and consequently contributes to the proper establishment of cell polarity and cell growth. The +TIP proteins including Tip1/CLIP-170, Klp5/Kinesin-8, and Alp14/XMAP215 reside at microtubule plus ends to regulate microtubule dynamics. In the fission yeast Schizosaccharomyces pombe, Tip1 and Alp14 serve as microtubule-stabilizing factors, while Klp5 functions oppositely as a catastrophe-promoting factor. Despite that Tip1 has been shown to play a key role in restricting microtubule catastrophe to the cell end, how Tip1 fulfills the role remains to be determined. Employing live-cell microscopy, we showed that the absence of Tip1 impairs the localization of both Klp5 and Alp14 at microtubule plus ends, but the absence of Klp5 prolongs the residence time of Tip1 at microtubule plus ends. We further revealed that Klp5 accumulates behind Tip1 at microtubule plus ends in a Tip1-dependentmanner. In addition, artificially tethering Klp5 to microtubule plus ends promotes premature microtubule catastrophe, while tethering Alp14 to microtubule plus ends in the cells lacking Tip1 rescues the phenotype of short microtubules. These findings establish that Tip1 restricts microtubule catastrophe to the cell end likely by spatially restricting the microtubule catastrophe activity of Klp5 and stabilizing Alp14 at microtubule plus ends. Thus, the work demonstrates the orchestration of Tip1, Alp14, and Klp5 in ensuring microtubule catastrophe at the cell end.
机译:微管灾难的空间调节对于控制微管长度是重要的,因此有助于正确建立细胞极性和细胞生长。包括Tip1 / Clip-170,KLP5 / Kinesin-8和ALP14 / XMAP215在内的+尖端蛋白在Microotubule Plus Ender下纳入调节微管动态。在裂变酵母Schizosaccharomyces Pombe,Tip1和AlP14用作微管稳定因子,而KLP5函数作为灾难性促进因子。尽管已经证明了Tip1在限制微管灾难到细胞端时发挥关键作用,但Tip1如何实现仍有待确定的作用。使用活细胞显微镜检查,我们表明,没有Tip1损害在微管Plus末端的KLP5和ALP14的定位,但没有KLP5延长Tip1在微管Plus末端的停留时间。我们进一步揭示了KLP5在微管加上倾斜的尖端1末端在Tip1的依赖管理员中累积。此外,人工束缚KLP5至微管加端促进过早的微管灾难,同时将ALP14纳入微管加上缺乏Tip1的细胞中的末端抵押短微管的表型。这些发现确定TIP1通过在空间限制KLP5的微管灾难性活性并在微管加末端稳定ALP14,限制对细胞端的微管灾难。因此,该工作证明了Tip1,AlP14和KLP5的编排,确保了细胞端的微管灾难。

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