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Mitotic centromere-associated kinesin (MCAK): a potential cancer drug target

机译:有丝分裂着丝粒相关的驱动蛋白(MCAK):潜在的癌症药物靶标

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摘要

The inability to faithfully segregate chromosomes in mitosis results in chromosome instability, a hallmark of solid tumors. Disruption of microtubule dynamics contributes highly to mitotic chromosome instability. The kinesin-13 family is critical in the regulation of microtubule dynamics and the best characterized member of the family, the mitotic centromere-associated kinesin (MCAK), has recently been attracting enormous attention. MCAK regulates microtubule dynamics as a potent depolymerizer of microtubules by removing tubulin subunits from the polymer end. This depolymerizing activity plays pivotal roles in spindle formation, in correcting erroneous attachments of microtubule-kinetochore and in chromosome movement. Thus, the accurate regulation of MCAK is important for ensuring the faithful segregation of chromosomes in mitosis and for safeguarding chromosome stability. In this review we summarize recent data concerning the regulation of MCAK by mitotic kinases, Aurora A/B, Polo-like kinase 1 and cyclin-dependent kinase 1. We propose a molecular model of the regulation of MCAK by these mitotic kinases and relevant phosphatases throughout mitosis. An ever-increasing quantity of data indicates that MCAK is aberrantly regulated in cancer cells. This deregulation is linked to increased malignance, invasiveness, metastasis and drug resistance, most probably due to increased chromosomal instability and remodeling of the microtubule cytoskeleton in cancer cells. Most interestingly, recent observations suggest that MCAK could be a novel molecular target for cancer therapy, as a new cancer antigen or as a mitotic regulator. This collection of new data indicates that MCAK could be a new star in the cancer research sky due to its critical roles in the control of genome stability and the cytoskeleton. Further investigations are required to dissect the fine details of the regulation of MCAK throughout mitosis and its involvements in oncogenesis.
机译:无法如实地分离有丝分裂中的染色体会导致染色体不稳定,这是实体瘤的标志。微管动力学的破坏是导致有丝分裂染色体不稳定的重要原因。 kinesin-13家族对于微管动力学的调节至关重要,家族中最有特色的成员是有丝分裂着丝粒相关的kinesin(MCAK),最近引起了极大的关注。 MCAK通过从聚合物末端去除微管蛋白亚基来调节微管动力学,作为微管的有效解聚剂。这种解聚活性在纺锤体形成,纠正微管-动线粒的错误附着以及染色体运动中起着关键作用。因此,MCAK的精确调节对于确保有丝分裂中染色体的忠实分离和维护染色体稳定性非常重要。在这篇综述中,我们总结了有关有丝分裂激酶,Aurora A / B,Polo样激酶1和细胞周期蛋白依赖性激酶1调控MCAK的最新数据。我们提出了这些有丝分裂激酶和相关磷酸酶调控MCAK的分子模型。整个有丝分裂。越来越多的数据表明MCAK在癌细胞中受到异常调节。这种失调与恶性,侵袭性,转移和耐药性的增加有关,这很可能是由于染色体不稳定和癌细胞中微管细胞骨架的重塑所致。最有趣的是,最近的观察表明,MCAK可以作为新的癌症抗原或有丝分裂调节剂,成为癌症治疗的新型分子靶标。这些新数据的收集表明,由于MCAK在控制基因组稳定性和细胞骨架方面起着至关重要的作用,因此它可以成为癌症研究领域的一颗新星。需要进一步研究以剖析整个有丝分裂中MCAK调控的精细细节及其在肿瘤发生中的作用。

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