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Let's huddle to prevent a muddle: Centrosome declustering as an attractive anticancer strategy

机译:让我们挤在一起防止混乱:中心体去簇是一种有吸引力的抗癌策略

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Nearly a century ago, cell biologists postulated that the chromosomal aberrations blighting cancer cells might be caused by a mysterious organellethe centrosomethat had only just been discovered. For years, however, this enigmatic structure was neglected in oncologic investigations and has only recently reemerged as a key suspect in tumorigenesis. A majority of cancer cells, unlike healthy cells, possess an amplified centrosome complement, which they manage to coalesce neatly at two spindle poles during mitosis. This clustering mechanism permits the cell to form a pseudo-bipolar mitotic spindle for segregation of sister chromatids. On rare occasions this mechanism fails, resulting in declustered centrosomes and the assembly of a multipolar spindle. Spindle multipolarity consigns the cell to an almost certain fate of mitotic arrest or death. The catastrophic nature of multipolarity has attracted efforts to develop drugs that can induce declustering in cancer cells. Such chemotherapeutics would theoretically spare healthy cells, whose normal centrosome complement should preclude multipolar spindle formation. In search of the Holy Grail of nontoxic, cancer cell-selective, and superiorly efficacious chemotherapy, research is underway to elucidate the underpinnings of centrosome clustering mechanisms. Here, we detail the progress made towards that end, highlighting seminal work and suggesting directions for future research, aimed at demystifying this riddling cellular tactic and exploiting it for chemotherapeutic purposes. We also propose a model to highlight the integral role of microtubule dynamicity and the delicate balance of forces on which cancer cells rely for effective centrosome clustering. Finally, we provide insights regarding how perturbation of this balance may pave an inroad for inducing lethal centrosome dispersal and death selectively in cancer cells.
机译:近一个世纪前,细胞生物学家推测,导致癌细胞死亡的染色体畸变可能是由刚刚发现的神秘细胞器-中心体引起的。然而,多年来,这种神秘的结构在肿瘤学研究中一直被忽略,直到最近才重新成为肿瘤发生的主要嫌疑人。与健康细胞不同,大多数癌细胞都具有扩增的中心体补体,在有丝分裂过程中,它们设法在两个纺锤体极点上整齐地融合在一起。这种聚集机制使细胞能够形成伪双极有丝分裂纺锤体,用于分离姐妹染色单体。在极少数情况下,这种机制会失败,从而导致中心体聚簇并形成多极纺锤体。纺锤体的多极性使细胞几乎有一定的有丝分裂停滞或死亡的命运。多极性的灾难性性质吸引了人们的努力,以开发可以诱导癌细胞减少簇集的药物。从理论上讲,这种化学疗法将使健康细胞免于健康,其正常的中心体补体应阻止多极纺锤体的形成。为了寻找无毒,对癌细胞有选择性且疗效卓著的化学疗法的圣杯,正在进行研究以阐明中心体聚类机制的基础。在这里,我们详细介绍了为此目的所取得的进展,重点介绍了开创性工作并为未来的研究提供了方向,旨在揭开这种繁琐的细胞策略,并将其用于化学疗法的目的。我们还提出了一个模型,以突出微管动态性的不可或缺的作用以及癌细胞对有效中心体聚类所依赖的力的微妙平衡。最后,我们提供了有关这种平衡的微扰可能如何为选择性地诱导致死性中心体扩散和死亡在癌细胞中铺平道路的见解。

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