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首页> 外文期刊>Bioscience Reports >Control of cell cycle progression by phosphorylation of cyclin-dependent kinase (CDK) substrates
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Control of cell cycle progression by phosphorylation of cyclin-dependent kinase (CDK) substrates

机译:通过细胞周期蛋白依赖性激酶(CDK)底物的磷酸化控制细胞周期进程

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摘要

The eukaryotic cell cycle is a fundamental evolutionarily conserved process that regulates cell division from simple unicellular organisms, such as yeast, through to higher multicellular organisms, such as humans. The cell cycle comprises several phases, including the S-phase (DNA synthesis phase) and M-phase (mitotic phase). During S-phase, the genetic material is replicated, and is then segregated into two identical daughter cells following mitotic M-phase and cytokinesis. The S- and M-phases are separated by two gap phases (G1 and G2) that govern the readiness of cells to enter S- or M-phase. Genetic and biochemical studies demonstrate that cell division in eukaryotes is mediated by CDKs (cyclin-dependent kinases). Active CDKs comprise a protein kinase subunit whose catalytic activity is dependent on association with a regulatory cyclin subunit. Cell-cycle-stage-dependent accumulation and proteolytic degradation of different cyclin subunits regulates their association with CDKs to control different stages of cell division. CDKs promote cell cycle progression by phosphorylating critical downstream substrates to alter their activity. Here, we will review some of the well-characterized CDK substrates to provide mechanistic insights into how these kinases control different stages of cell division.
机译:真核细胞周期是一个基本的进化保守过程,其调节从简单的单细胞生物(例如酵母)到更高的多细胞生物(例如人类)的细胞分裂。细胞周期包括几个阶段,包括S阶段(DNA合成阶段)和M阶段(有丝分裂阶段)。在S期,遗传物质被复制,然后在有丝分裂M期和胞质分裂之后被分离成两个相同的子细胞。 S相和M相由两个间隙相(G1和G2)隔开,它们控制着细胞进入S相或M相的准备状态。遗传和生化研究表明,真核生物中的细胞分裂是由CDK(细胞周期蛋白依赖性激酶)介导的。活性CDK包含蛋白激酶亚基,其催化活性取决于与调节性细胞周期蛋白亚基的缔合。不同细胞周期蛋白亚基的细胞周期阶段依赖性积累和蛋白水解降解调节其与CDK的结合,以控制细胞分裂的不同阶段。 CDK通过磷酸化关键的下游底物来改变其活性,从而促进细胞周期进程。在这里,我们将回顾一些特征明确的CDK底物,以提供有关这些激酶如何控制细胞分裂不同阶段的机制的见解。

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