细胞生物学
有丝分裂
胚胎
中期
染色体分离
生物
主轴检查点
动细胞
前期
主轴装置
肌球蛋白
细胞分裂
遗传学
减数分裂
染色体
细胞
基因
作者
Blake Hernandez,Piotr Tetlak,Ana Domingo-Muelas,Hiroki Akizawa,Robin M. Skory,Goli Ardestani,Maté Biro,Xiaolei Liu,Stéphanie Bissière,Denny Sakkas,Nicolas Plachta
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-05-22
卷期号:388 (6749)
标识
DOI:10.1126/science.ads1234
摘要
Following fertilization, the preimplantation embryo undergoes successive rounds of cell division and must accurately propagate the genetic material to ensure successful development. However, early mammalian embryos lack efficient spindle assembly mechanisms, and it remains unclear how error-free chromosome segregation is achieved. In this work, we imaged early mouse embryos and identified a network of nuclear actin cables that organize prophase chromosomes at the nuclear periphery. Following nuclear envelope breakdown, the network contracts and gathers chromosomes toward the cell center. Network contraction was driven by filament disassembly in a myosin II-independent manner. Additionally, we identified a network of branched actin filaments that attenuates metaphase spindle elongation. We also visualized nuclear actin in human embryos, suggesting a conserved role for actin in ensuring mitotic fidelity during early mammalian development.
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