首页> 外文期刊>Journal of Cell Science >Distinct mechanisms govern the localisation of Drosophila CLIP-190 to unattached kinetochores and microtubule plus-ends
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Distinct mechanisms govern the localisation of Drosophila CLIP-190 to unattached kinetochores and microtubule plus-ends

机译:不同的机制控制果蝇CLIP-190定位于独立的动植物和微管正末端

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摘要

CLIP-170 was the first microtubule plus-end-tracking protein to be described, and is implicated in the regulation of microtubule plus-ends and their interaction with other cellular structures. Here, we have studied the cell-cycle-dependent mechanisms which localise the sole Drosophila melanogaster homologue CLIP-190. During mitosis, CLIP-190 localises to unattached kinetochores independently of spindle-checkpoint activation. This localisation depends on the dynein-dynactin complex and Lis1 which also localise to unattached kinetochores. Further analysis revealed a hierarchical dependency between the proteins with respect to their kinetochore localisation. An inhibitor study also suggested that the motor activity of dynein is required for the removal of CLIP-190 from attached kinetochores. In addition, we found that CLIP-190 association to microtubule plus-ends is regulated during the cell cycle. Microtubule plus-end association is strong in interphase and greatly attenuated during mitosis. Another microtubule plus-end tracking protein, EB1, directly interacts with the CAP-Gly domain of CLIP-190 and is required to localise CLIP-190 at microtubule plus-ends. These results indicate distinct molecular requirements for CLIP-190 localisation to unattached kinetochores in mitosis and microtubule ends in interphase.
机译:CLIP-170是第一个被描述的微管正向末端追踪蛋白,与微管正向末端的调控及其与其他细胞结构的相互作用有关。在这里,我们已经研究了依赖细胞周期的机制,该机制定位了唯一的果蝇果蝇同源物CLIP-190。在有丝分裂期间,CLIP-190会独立于纺锤体检查点的激活而定位于独立的动植物。此定位取决于dynein-dynactin复合物和Lis1,后者也定位于未连接的动植物。进一步的分析揭示了蛋白质之间关于线粒体定位的等级依赖性。一项抑制剂研究还表明,要从附着的动植物中清除CLIP-190,需要动力蛋白的运动。另外,我们发现CLIP-190与微管正末端的结合在细胞周期中受到调节。微管的正负关联在相间很强,在有丝分裂期间会大大减弱。另一个微管正端跟踪蛋白EB1与CLIP-190的CAP-Gly结构域直接相互作用,并且需要将CLIP-190定位在微管正端。这些结果表明CLIP-190定位到有丝分裂中未连接的动植物和相间微管末端的独特分子要求。

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