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Concerted effort of centrosomal and Golgi-derived microtubules is required for proper Golgi complex assembly but not for maintenance

机译:中心体和高尔基衍生的微管需要共同努力才能正确组装高尔基体但无需维护

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摘要

Assembly of an integral Golgi complex is driven by microtubule (MT)-dependent transport. Conversely, the Golgi itself functions as an unconventional MT-organizing center (MTOC). This raises the question of whether Golgi assembly requires centrosomal MTs or can be self-organized, relying on its own MTOC activity. The computational model presented here predicts that each MT population is capable of gathering Golgi stacks but not of establishing Golgi complex integrity or polarity. In contrast, the concerted effort of two MT populations would assemble an integral, polarized Golgi complex. Indeed, while laser ablation of the centrosome did not alter already-formed Golgi complexes, acentrosomal cells fail to reassemble an integral complex upon nocodazole washout. Moreover, polarity of post-Golgi trafficking was compromised under these conditions, leading to strong deficiency in polarized cell migration. Our data indicate that centrosomal MTs complement Golgi self-organization for proper Golgi assembly and motile-cell polarization.
机译:完整的高尔基体复合体的组装是由微管(MT)依赖性运输驱动的。相反,高尔基山脉本身是一个非常规的MT组织中心(MTOC)。这就提出了一个问题,即高尔基体组装体是否需要中心体MT或可以依靠自身的MTOC活动进行自我组织。这里介绍的计算模型预测每个MT群体都能够收集高尔基体,但是不能建立高尔基体的完整性或极性。相反,两个MT族群的共同努力将组装出一个完整的,极化的高尔基体。确实,尽管中心体的激光消融并没有改变已经形成的高尔基体,但在诺考达唑洗脱后,人体细胞无法重组完整的复合体。此外,在这些条件下,高尔基后运输的极性受到损害,导致极化细胞迁移严重缺乏。我们的数据表明,中心体MT补充了高尔基体的自组织,以实现正确的高尔基体组装和运动细胞极化。

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