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The Drosophila gamma-tubulin small complex subunit Dgrip84 is required for structural and functional integrity of the spindle apparatus

机译:果蝇γ-微管蛋白小复合亚基Dgrip84是纺锤体结构和功能完整性所必需的

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摘要

gamma-Tubulin, a protein critical for microtubule assembly, functions within multiprotein complexes. However, little is known about the respective role of gamma-tubulin partners in metazoans. For the first time in a multicellular organism, we have investigated the function of Dgrip84, the Drosophila orthologue of the Saccharomyces cerevisiae gamma-tubulin-associated protein Spc97p. Mutant analysis shows that Dgrip84 is essential for viability. Its depletion promotes a moderate increase in the mitotic index, correlated with the appearance of monopolar or unpolarized spindles, impairment of centrosome maturation, and increase of polyploid nuclei. This in vivo study is strengthened by an RNA interference approach in cultured S2 cells. Electron microscopy analysis suggests that monopolar spindles might result from a failure of centrosome separation and an unusual microtubule assembly pathway via centriolar triplets. Moreover, we point to an involvement of Dgrip84 in the spindle checkpoint regulation and in the maintenance of interphase microtubule dynamics. Dgrip84 also seems essential for male meiosis, ensuring spindle bipolarity and correct completion of cytokinesis. These data sustain that Dgrip84 is required in some aspects of microtubule dynamics and organization both in interphase and mitosis. The nature of a minimal gamma-tubulin complex necessary for proper microtubule organization in the metazoans is discussed.
机译:γ-微管蛋白(一种对微管组装至关重要的蛋白)在多蛋白复合物中发挥作用。然而,关于后生动物中γ-微管蛋白伴侣各自的作用还知之甚少。在多细胞生物中,我们首次研究了酿酒酵母γ-微管蛋白相关蛋白Spc97p的果蝇直向同源基因Dgrip84的功能。突变分析表明Dgrip84对生存力至关重要。它的消耗促进有丝分裂指数的适度增加,与单极或非极化纺锤体的出现,中心体成熟的损害和多倍体核的增加有关。通过体内培养的S2细胞中的RNA干扰方法加强了这项体内研究。电子显微镜分析表明,单极纺锤体可能是由于中心体分离失败以及经由中心小三胞胎的异常微管组装途径所致。此外,我们指出Dgrip84参与纺锤体检查点调节和维持相间微管动力学。 Dgrip84对于雄性减数分裂似乎也必不可少,它可确保纺锤体双极性并正确完成胞质分裂。这些数据表明,在相间和有丝分裂的微管动力学和组织的某些方面都需要Dgrip84。讨论了后生动物中适当的微管组织所必需的最小γ-微管蛋白复合物的性质。

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