有丝分裂控制过程中的蛋白激酶:关注核细胞质的运输。

P Gallant, A M Fry, E A Nigg
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引用次数: 30

摘要

真核细胞核是一个高度动态的细胞器。在有丝分裂过程中,核包膜破裂、核薄层解体、染色体缩合,基于微管的纺锤体装置将姐妹染色单体分配到分裂的子细胞中,这一切最能说明问题。核结构和微管组织中的这些剧烈变化很多都是由磷酸化和去磷酸化事件控制的。虽然依赖细胞周期蛋白的激酶(CDKs)在有丝分裂调控中的主要作用已得到公认,但现在有明确证据表明,有丝分裂还需要其他蛋白激酶。对 CDKs 和其他有丝分裂激酶的调控研究发现,这些酶的亚细胞分布会发生依赖于细胞周期的变化,这表明定位可能有助于调控它们的活动。本文介绍了与有丝分裂开始时 CDK/细胞周期蛋白复合物的核胞质转位有关的一些最新发现。此外,文章还总结了与控制有丝分裂进程有关的两种新型人类蛋白激酶的最新信息。
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Protein kinases in the control of mitosis: focus on nucleocytoplasmic trafficking.

The eukaryotic cell nucleus is a highly dynamic organelle. This is illustrated most dramatically during mitosis, when the nuclear envelope breaks down, the nuclear lamina disassembles, chromosomes condense, and a microtubule-based spindle apparatus distributes sister chromatids to the dividing daughter cells. Many of these dramatic changes in nuclear architecture and microtubule organization are controlled by phosphorylation and dephosphorylation events. Whereas the cardinal role of cyclin-dependent kinases (CDKs) in the regulation of mitosis is well established, there is now clear evidence for the requirement of additional mitotic protein kinases. Studies into the regulation of CDKs and other mitotic kinases have revealed that these enzymes undergo cell cycle dependent changes in subcellular distribution, suggesting that localization may contribute to regulating their activities. This article describes some recent findings relating to the nucleocytoplasmic translocation of CDK/cyclin complexes at the onset of mitosis. In addition, it summarizes recent information on two novel human protein kinases which have been implicated in the control of mitotic progression.

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