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Free centrosomes: where do they all come from?. [Review] [34 refs]

机译:自由中心体:它们都来自哪里? [评论] [34个裁判]

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Centrosomes act as major microtubule-organizing centers in most cell types. Their functions in interphase and mitosis are usually facilitated by their association with the nucleus. This may be particularly true in very large cells. Several papers report free centrosomes in syncytial Drosophila embryos. However, this phenotype often remains little explored. Yet, free centrosomes can occur by multiple mechanisms, including functional defects of the mitotic spindle, detachment of centrosomes from the nuclear envelope, centrosome inactivation upon DNA damage, and de novo centrosome genesis. Deciphering the cellular mechanism leading to free centrosomes upon a given perturbation such as a mutation or injection of a drug, can provide valuable clues regarding the nature of the molecular pathway affected. To this end, genetic and cytological tests, as well as time-lapse imaging are available. These studies can inform on the biology of centrosomes, cell cycle regulation and cytoskeletal dynamics. Here we briefly discuss what to make of free centrosomes in the fly embryo.
机译:中心体在大多数细胞类型中充当主要的微管组织中心。它们与核的结合通常促进了它们在相间和有丝分裂中的功能。在非常大的小区中尤其如此。几篇论文报道了合胞体果蝇胚胎中的游离中心体。但是,这种表型经常很少被探索。然而,游离中心体可以通过多种机制发生,包括有丝分裂纺锤体的功能缺陷,中心体从核被膜上脱落,DNA损伤时中心体失活以及新的中心体起源。在给定的扰动(例如药物的突变或注射)下破译导致游离中心体的细胞机制,可以提供有关受影响的分子途径的性质的有价值的线索。为此,可以进行遗传和细胞学检查以及延时成像。这些研究可以提供有关中心体生物学,细胞周期调控和细胞骨架动力学的信息。在这里,我们简要讨论了苍蝇胚胎中游离中心体的组成。

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