Chen Shengyao, Stout Jane R, Dharmaiah Sathiya, Yde Sarah, Calvi Brian R, Walczak Claire E
Department of Biology, Indiana University, Bloomington, IN 47405.
Medical Sciences Program, Indiana University, Bloomington, IN 47405.
Mol Biol Cell. 2016 Oct 1;27(19):2911-23. doi: 10.1091/mbc.E16-03-0159. Epub 2016 Aug 3.
Polyploid cancer cells exhibit chromosomal instability (CIN), which is associated with tumorigenesis and therapy resistance. The mechanisms that induce polyploidy and how these mechanisms contribute to CIN are not fully understood. Here we evaluate CIN in human cells that become polyploid through an experimentally induced endoreplication cycle. When these induced endoreplicating cells (iECs) returned to mitosis, it resulted in aneuploidy in daughter cells. This aneuploidy resulted from multipolar divisions, chromosome missegregation, and failure in cytokinesis. The iECs went through several rounds of division, ultimately spawning proliferative cells of reduced ploidy. iECs have reduced levels of the kinesin-14 HSET, which likely accounts for the multipolar divisions, and overexpression of HSET reduced spindle multipolarity. However, HSET overexpression had only mild effects on CIN, suggesting that additional defects must contribute to genomic instability in dividing iECs. Overall our results suggest that transient endoreplication cycles generate a diverse population of proliferative aneuploid cells that have the potential to contribute to tumor heterogeneity.
多倍体癌细胞表现出染色体不稳定性(CIN),这与肿瘤发生和治疗抗性相关。诱导多倍体的机制以及这些机制如何导致CIN尚未完全了解。在这里,我们评估了通过实验诱导的核内复制周期变成多倍体的人类细胞中的CIN。当这些诱导的核内复制细胞(iECs)恢复有丝分裂时,会导致子细胞出现非整倍体。这种非整倍体是由多极分裂、染色体错分离和胞质分裂失败引起的。iECs经历了几轮分裂,最终产生了倍性降低的增殖细胞。iECs中驱动蛋白-14 HSET的水平降低,这可能是多极分裂的原因,而HSET的过表达降低了纺锤体多极性。然而,HSET过表达对CIN只有轻微影响,这表明其他缺陷必定导致了分裂中的iECs的基因组不稳定。总体而言,我们的结果表明,短暂的核内复制周期产生了多种增殖性非整倍体细胞群体,这些细胞有可能导致肿瘤异质性。