微管
染色体分离
主轴装置
生物
主轴杆体
过程(计算)
动细胞
微管形核
计算机科学
细胞生物学
细胞分裂
染色体
细胞
遗传学
中心体
细胞周期
操作系统
基因
作者
Venecia A. Valdez,Lila Neahring,Sabine Petry,Sophie Dumont
标识
DOI:10.1038/s41580-023-00584-0
摘要
The microtubule-based spindle orchestrates chromosome segregation during cell division. Following more than a century of study, many components and pathways contributing to spindle assembly have been described, but how the spindle robustly assembles remains incompletely understood. This process involves the self-organization of a large number of molecular parts - up to hundreds of thousands in vertebrate cells - whose local interactions give rise to a cellular-scale structure with emergent architecture, mechanics and function. In this Review, we discuss key concepts in our understanding of spindle assembly, focusing on recent advances and the new approaches that enabled them. We describe the pathways that generate the microtubule framework of the spindle by driving microtubule nucleation in a spatially controlled fashion and present recent insights regarding the organization of individual microtubules into structural modules. Finally, we discuss the emergent properties of the spindle that enable robust chromosome segregation.
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