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The roles of fission yeast Ase1 in mitotic cell division, meiotic nuclear oscillation, and cytokinesis checkpoint signaling

机译:裂变酵母Ase1在有丝分裂细胞分裂,减数分裂核振荡和胞质分裂检查点信号中的作用

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摘要

The Ase1/Prc1 proteins constitute a conserved microtubule-associated protein family that is implicated in central spindle formation and cytokinesis. Here we characterize a role for fission yeast Ase1. Ase1 localizes to microtubule overlapping zones and displays dynamic alterations of localization during the cell cycle. In particular, its spindle localization during metaphase is reduced substantially, followed by robust appearance at the spindle midzone in anaphase. ase1 deletions are viable but defective in nuclear and septum positioning and completion of cytokinesis, which leads to diploidization and chromosome loss. Time-lapse imaging shows that elongating spindles collapse abruptly in the middle of anaphase B. Either absence or overproduction of Ase1 results in profound defects on microtubule bundling in an opposed manner, indicating that Ase1 is a dose-dependent microtubule-bundling factor. In contrast microtubule nucleating activities are not noticeably compromised in ase1 mutants. During meiosis astral microtubules are not bundled and oscillatory nuclear movement is impaired significantly. The Aurora kinase does not correctly localize to central spindles in the absence of Ase1. Finally Ase1 acts as a regulatory component in the cytokinesis checkpoint that operates to inhibit nuclear division when the cytokinesis apparatus is perturbed. Ase1, therefore, couples anaphase completion with cytokinesis upon cell division.
机译:Ase1 / Prc1蛋白构成一个保守的微管相关蛋白家族,与中央纺锤体形成和胞质分裂有关。在这里,我们表征裂变酵母Ase1的作用。 Ase1定位到微管重叠区,并在细胞周期中显示动态的定位变化。特别地,其在中期的纺锤体定位显着降低,随后在纺锤体中部出现坚固的外观。 ase1缺失是可行的,但在核和隔膜定位以及胞质分裂完成方面存在缺陷,从而导致二倍体化和染色体丢失。延时成像显示,伸长的纺锤在后期B的中间突然塌陷。Ase1的缺乏或过量生产会以相反的方式导致微管束的严重缺陷,表明Ase1是剂量依赖性的微管束因子。相比之下,ase1突变体中微管成核活性未受到明显损害。在减数分裂过程中,星形微管未捆扎,振荡核运动明显受损。在没有Ase1的情况下,Aurora激酶不能正确定位于中心纺锤体。最后,Ase1在胞质分裂检查点中充当调节成分,当胞质分裂装置受到干扰时,它可以抑制核分裂。因此,Ase1在细胞分裂时将后期完成与胞质分裂耦合。

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