罗亚
肌球蛋白
细胞质
细胞迁移
细胞生物学
中段
鸟嘌呤核苷酸交换因子
胞质分裂
化学
生物
GTP酶
信号转导
生物化学
细胞分裂
细胞
作者
Avery Tran,Emily Wisniewski,Panagiotis Mistriotis,Konstantin Stoletov,Maria Parlani,Alice Amitrano,Brent Ifemembi,Se Jong Lee,Kaustav Bera,Yuqi Zhang,Soontorn Tuntithavornwat,Alexandros Afthinos,Alexander Kiepas,Bhawana Agarwal,S. Nath,John J. Jamieson,Yi Zuo,Daniel Habib,Pei-Hsun Wu,Stuart S. Martin
标识
DOI:10.1038/s41563-025-02269-9
摘要
Abstract Cell migration in mechanically confined environments is a crucial step of metastatic cancer progression. Nonetheless, the molecular components and processes mediating such behaviour are still not fully understood. Here we demonstrate that a pool of the scaffolding protein anillin and its cofactor Ect2, which are both predominantly nuclear proteins and critical mediators of cytokinesis, is present in the cytoplasm of multiple interphase cell types that promote confined cell migration. Confined migration in biomimetic microfluidic models triggers the actomyosin-binding-dependent recruitment of anillin to the plasma membrane at the poles of migrating cells in a manner that scales with microenvironmental stiffness and confinement. The guanine nucleotide exchange activity of Ect2 is required for its RhoA-GTPase-mediated activation of myosin II at the cell poles, enhancing invasion, bleb-based migration and extravasation. Confinement-induced nuclear envelope rupture further amplifies this process due to the release of further anillin and Ect2 into the cytoplasm. Overall, these results show how Ect2 and anillin cooperate to mediate RhoA/ROCK/myosin II-dependent mechanoadaptation and invasive cancer progression.
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