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The cell cycle is an intricate process of DNA replication and cell division that concludes with the formation of two genetically equivalent daughter cells. In this progression, the centrosome is duplicated once and only once during the G1/S transition to produce the bipolar spindle and ensure proper chromosome segregation. The presence of multiple centrosomes in cancer cells suggests that this process is mis-regulated during carcinogenesis. This suggests that certain factors exist that license the progression of centrosome duplication and serve to inhibit further duplications during a single cell cycle. Recent studies suggest that the Ran/Crm1 complex not only regulates nucleocytoplasmic transport but is also independently involved in mitotic spindle assembly. Factors that are capable of interacting with Ran/Crm1 through their nuclear export sequences, such as cyclins/cdks, p53 and Brca1/2, may potentially function as centrosome checkpoints akin to the G1/S and G2/M checkpoints of the cell cycle. Our recent findings indicate that nucleophosmin, a protein whose trafficking is mediated by the Ran/Crm1 network, is one of such checkpoint factors for maintaining proper centrosome duplication. We propose that Ran/Crm1 may act as a ‘loading dock’ to coordinate various checkpoint factors in regulating the fidelity of centrosome duplication during cell cycle progression, and the disruption of these processes may lead to genomic instability and an acceleration of oncogenesis.
机译:细胞周期是DNA复制和细胞分裂的复杂过程,最后形成两个遗传上等效的子细胞。在此过程中,中心体在G1 / S过渡期间复制一次且仅复制一次,以产生双极纺锤体并确保正确的染色体分离。癌细胞中存在多个中心体表明该过程在致癌过程中被错误调节。这表明存在某些因素,这些因素许可中心体复制的进行并在单个细胞周期内起到抑制进一步复制的作用。最近的研究表明,Ran / Crm1复合物不仅调节核质运输,而且还独立参与有丝分裂纺锤体组装。能够通过其核输出序列与Ran / Crm1相互作用的因子,例如细胞周期蛋白/ cdks,p53和Brca1 / 2,可能具有类似于细胞周期G1 / S和G2 / M检查点的中心体检查点的功能。我们最近的发现表明,核转运蛋白(一种由Ran / Crm1网络介导的蛋白)是维持适当中心体复制的此类检查点因素之一。我们建议Ran / Crm1可以充当“装载平台”,以协调各个检查点因素来调节细胞周期进程中中心体复制的保真度,而这些过程的破坏可能导致基因组不稳定和肿瘤发生的加速。

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