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染色体在多倍体细胞中作为有丝分裂纺锤体双极的障碍发挥作用。

Chromosomes function as a barrier to mitotic spindle bipolarity in polyploid cells.

机构信息

Institut Curie, Paris Science et Lettres Research University, Centre National de la Recherche Scientifique, Unité Mixte de Recherche UMR144, Biology of Centrosomes and Genetic Instability Laboratory, Paris, France.

Center for Interdisciplinary Research in Biology, Collège de France, UMR7241/U1050, Paris, France.

出版信息

J Cell Biol. 2020 Apr 6;219(4). doi: 10.1083/jcb.201908006.

Abstract

Ploidy variations such as genome doubling are frequent in human tumors and have been associated with genetic instability favoring tumor progression. How polyploid cells deal with increased centrosome numbers and DNA content remains unknown. Using Drosophila neuroblasts and human cancer cells to study mitotic spindle assembly in polyploid cells, we found that most polyploid cells divide in a multipolar manner. We show that even if an initial centrosome clustering step can occur at mitotic entry, the establishment of kinetochore-microtubule attachments leads to spatial chromosome configurations, whereby the final coalescence of supernumerary poles into a bipolar array is inhibited. Using in silico approaches and various spindle and DNA perturbations, we show that chromosomes act as a physical barrier blocking spindle pole coalescence and bipolarity. Importantly, microtubule stabilization suppressed multipolarity by improving both centrosome clustering and pole coalescence. This work identifies inhibitors of bipolar division in polyploid cells and provides a rationale to understand chromosome instability typical of polyploid cancer cells.

摘要

倍性变异,如基因组加倍,在人类肿瘤中很常见,与有利于肿瘤进展的遗传不稳定性有关。多倍体细胞如何应对增加的中心体数量和 DNA 含量尚不清楚。本研究使用果蝇神经母细胞瘤和人类癌细胞来研究多倍体细胞中的有丝分裂纺锤体组装,发现大多数多倍体细胞以多极方式分裂。我们表明,即使在有丝分裂开始时可以发生初始中心体聚类步骤,但着丝粒-微管附着的建立导致空间染色体构型,从而抑制多余极最终合并成双极阵列。通过计算机模拟方法和各种纺锤体和 DNA 扰动,我们表明染色体作为物理障碍,阻止纺锤体极的合并和双极性。重要的是,微管稳定性通过改善中心体聚类和极的合并来抑制多极。这项工作确定了多倍体细胞中抑制双极分裂的抑制剂,并为理解多倍体癌细胞中典型的染色体不稳定性提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/444c/7147111/395dbe3d423d/JCB_201908006_Fig1.jpg

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