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首页> 外文期刊>Molecular biology of the cell >The Concentration of Nuf, a Rab11 Effector, at the Microtubule-organizing Center Is Cell Cycle–regulated, Dynein-dependent, and Coincides with Furrow Formation
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The Concentration of Nuf, a Rab11 Effector, at the Microtubule-organizing Center Is Cell Cycle–regulated, Dynein-dependent, and Coincides with Furrow Formation

机译:Raf11效应的Nuf在微管组织中心的浓度是细胞周期调节的,动力蛋白依赖性的,并且与沟形成同时发生。

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摘要

Animal cytokinesis relies on membrane addition as well as acto-myosin–based constriction. Recycling endosome (RE)-derived vesicles are a key source of this membrane. Rab11, a small GTPase associated with the RE and involved in vesicle targeting, is required for elongation of the cytokinetic furrow. In the early Drosophila embryo, Nuclear-fallout (Nuf), a Rab11 effector, promotes vesicle-mediated membrane delivery and actin organization at the invaginating furrow. Although Rab11 maintains a relatively constant localization at the microtubule-organizing center (MTOC), Nuf is present at the MTOC only during the phases of the cell cycle in which furrow invagination occurs. We demonstrate that Nuf protein levels remain relatively constant throughout the cell cycle, suggesting that Nuf is undergoing cycles of concentration and dispersion from the MTOC. Microtubules, but not microfilaments, are required for proper MTOC localization of Nuf and Rab11. The MTOC localization of Nuf also relies on Dynein. Immunoprecipitation experiments demonstrate that Nuf and Dynein physically interact. In accord with these findings, and in contrast to previous reports, we demonstrate that microtubules are required for proper metaphase furrow formation. We propose that the cell cycle–regulated, Dynein-dependent recruitment of Nuf to the MTOC influences the timing of RE-based vesicle delivery to the invaginating furrows.
机译:动物的胞质分裂依赖于膜的添加以及基于肌动蛋白的收缩。回收内体(RE)的囊泡是该膜的关键来源。 Rab11是与RE相关并参与囊泡靶向的小GTP酶,是延长细胞动力学犁沟所需的。在果蝇的早期胚胎中,Rab11效应物Nuclear-fallout(Nuf)促进小沟介导的囊泡介导的膜递送和肌动蛋白组织。尽管Rab11在微管组织中心(MTOC)上保持相对恒定的定位,但是Nuf仅在发生沟沟内陷的细胞周期阶段才出现在MTOC上。我们证明Nuf蛋白水平在整个细胞周期中保持相对恒定,表明Nuf正在经历来自MTOC的浓缩和分散周期。 Nuf和Rab11的正确MTOC定位需要微管而不是微丝。 Nuf的MTOC本地化也依赖于Dynein。免疫沉淀实验表明Nuf和Dynein在物理上相互作用。符合这些发现,并与以前的报告相反,我们证明了适当的中期犁沟形成需要微管。我们建议,Nuf向MTOC的细胞周期调控,Dynein依赖性募集会影响基于RE的囊泡向沟沟的输送时间。

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