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The Anaphase-Promoting Complex/Cyclosome Is Required for Anaphase Progression in Multinucleated Ashbya gossypii Cells

机译:促进后期复杂的Ashbya棉酚细胞的后期发展需要促进后期的复合物/脂质体。

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摘要

Regulated protein degradation is essential for eukaryotic cell cycle progression. The anaphase-promoting complex/cyclosome (APC/C) is responsible for the protein destruction required for the initiation of anaphase and the exit from mitosis, including the degradation of securin and B-type cyclins. We initiated a study of the APC/C in the multinucleated, filamentous ascomycete Ashbya gossypii to understand the mechanisms underlying the asynchronous mitosis observed in these cells. These experiments were motivated by previous work which demonstrated that the mitotic cyclin AgClb1/2p persists through anaphase, suggesting that the APC/C may not be required for the division cycle in A. gossypii. We have now found that the predicted APC/C components AgCdc23p and AgDoc1p and the targeting factors AgCdc20p and AgCdh1p are essential for growth and nuclear division. Mutants lacking any of these factors arrest as germlings with nuclei blocked in mitosis. A likely substrate of the APC/C is the securin homologue AgPds1p, which is present in all nuclei in hyphae except those in anaphase. The destruction box sequence of AgPds1p is required for this timed disappearance. To investigate how the APC/C may function to degrade AgPds1p in only the subset of anaphase nuclei, we localized components and targeting subunits of the APC/C. Remarkably, AgCdc23p, AgDoc1p, and AgCdc16p were found in all nuclei in all cell cycle stages, as were the APC/C targeting factors AgCdc20p and AgCdh1p. These data suggest that the AgAPC/C may be constitutively active across the cell cycle and that proteolysis in these multinucleated cells may be regulated at the level of substrates rather than by the APC/C itself.
机译:调节的蛋白质降解对于真核细胞周期进程至关重要。后期促进复合物/环体(APC / C)负责启动后期和从有丝分裂中退出所需的蛋白质破坏,包括安全蛋白和B型细胞周期蛋白的降解。我们启动了对多核,丝状子囊菌Ashbya gossypii中APC / C的研究,以了解在这些细胞中观察到的异步有丝分裂的潜在机制。这些实验是由先前的工作激发的,这些工作表明有丝分裂细胞周期蛋白AgClb1 / 2p持续到后期,这表明棉铃虫的分裂周期可能不需要APC / C。现在我们已经发现,预测的APC / C成分AgCdc23p和AgDoc1p以及靶向因子AgCdc20p和AgCdh1p对于增长和核分裂至关重要。缺少任何这些因素的突变体都被阻止为有核分裂的核苗。 APC / C的可能底物是seccurin同源物AgPds1p,其存在于菌丝的所有核中,后期除外。对于此定时消失,需要AgPds1p的销毁盒序列。为了研究APC / C如何仅在后期核子集中降解AgPds1p,我们对APC / C的成分和靶向亚基进行了定位。值得注意的是,在所有细胞周期阶段的所有核中都发现了AgCdc23p,AgDoc1p和AgCdc16p,以及APC / C靶向因子AgCdc20p和AgCdh1p。这些数据表明,AgAPC / C可能在整个细胞周期中具有组成性活性,并且这些多核细胞中的蛋白水解可能受底物水平的调节,而不是受APC / C本身的调节。

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