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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Spatiotemporal regulation of the Dma1-mediated mitotic checkpoint coordinates mitosis with cytokinesis
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Spatiotemporal regulation of the Dma1-mediated mitotic checkpoint coordinates mitosis with cytokinesis

机译:DMA1介导的有丝分型检查点的时尚调节坐标用细胞因子坐标

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摘要

During cell division, the timing of mitosis and cytokinesis must be ordered to ensure that each daughter cell receives a complete, undamaged copy of the genome. In fission yeast, the septation initiation network (SIN) is responsible for this coordination, and a mitotic checkpoint dependent on the E3 ubiquitin ligase Dma1 and the protein kinase CK1 controls SIN signaling to delay cytokinesis when there are errors in mitosis. The participation of kinases and ubiquitin ligases in cell cycle checkpoints that maintain genome integrity is conserved from yeast to human, making fission yeast an excellent model system in which to study checkpoint mechanisms. In this review, we highlight recent advances and remaining questions related to checkpoint regulation, which requires the synchronized modulation of protein ubiquitination, phosphorylation, and subcellular localization.
机译:在细胞划分期间,必须令导有丝分裂和细胞因子的时序来确保每个子细胞接收到基因组的完整未损坏的副本。 在裂变酵母中,荚膜发起网络(SIN)负责这种协调,并且依赖于E3泛素连接酶DMA1和蛋白激酶CK1的有丝分裂检查点控制SIN信号传导,以延迟细胞因子,当有丝分裂有误差时。 激酶和泛素粘酶的参与在细胞周期检查点,将基因组完整性维持从酵母到人类,使裂变酵母成为研究检查点机制的优秀模型系统。 在本综述中,我们突出了与检查点调节相关的最近的进展和剩余的问题,这需要对蛋白质泛素化,磷酸化和亚细胞定位的同步调节。

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