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Augmin: a protein complex required for centrosome-independent microtubule generation within the spindle

机译:Augmin:纺锤体内不依赖于中心体的微管生成所需的蛋白质复合物

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摘要

Since the discovery of γ-tubulin, attention has focused on its involvement as a microtubule nucleator at the centrosome. However, mislocalization of γ-tubulin away from the centrosome does not inhibit mitotic spindle formation in Drosophila melanogaster, suggesting that a critical function for γ-tubulin might reside elsewhere. A previous RNA interference (RNAi) screen identified five genes (Dgt2–6) required for localizing γ-tubulin to spindle microtubules. We show that the Dgt proteins interact, forming a stable complex. We find that spindle microtubule generation is substantially reduced after knockdown of each Dgt protein by RNAi. Thus, the Dgt complex that we name “augmin” functions to increase microtubule number. Reduced spindle microtubule generation after augmin RNAi, particularly in the absence of functional centrosomes, has dramatic consequences on mitotic spindle formation and function, leading to reduced kinetochore fiber formation, chromosome misalignment, and spindle bipolarity defects. We also identify a functional human homologue of Dgt6. Our results suggest that an important mitotic function for γ-tubulin may lie within the spindle, where augmin and γ-tubulin function cooperatively to amplify the number of microtubules.
机译:自从发现γ-微管蛋白以来,注意力就集中在其作为中心体上的微管成核剂上。然而,γ-微管蛋白远离中心体的错误定位不会抑制果蝇中有丝分裂纺锤体的形成,这表明γ-微管蛋白的关键功能可能存在于其他地方。先前的RNA干扰(RNAi)筛选确定了将γ-微管蛋白定位于纺锤体微管所需的五个基因(Dgt2-6)。我们显示Dgt蛋白相互作用,形成稳定的复合物。我们发现,RNAi敲低每个Dgt蛋白后,纺锤体微管的产生显着减少。因此,我们命名为“ augmin”的Dgt复合物起着增加微管数量的作用。 Augmin RNAi后纺锤体微管生成减少,特别是在没有功能性中心体的情况下,对有丝分裂纺锤体纺锤体的形成和功能产生了显着影响,从而导致线粒体纤维形成减少,染色体错位和纺锤体双极性缺陷。我们还确定了Dgt6的功能性人类同源物。我们的结果表明,γ-微管蛋白的重要有丝分裂功能可能位于纺锤体中,其中augmin和γ-微管蛋白协同作用以放大微管的数量。

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