Push or pull: how cytoskeletal crosstalk facilitates nuclear movement through 3D environments.

Push or pull: how cytoskeletal crosstalk facilitates nuclear movement through 3D environments.
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DOI:
10.1088/1478-3975/ac45e3
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发表时间:
2022-01-12
期刊:
影响因子:
2
通讯作者:
--
中科院分区:
生物学4区
文献类型:
--
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当细胞从二维(2D)表面移动到复杂的3D环境中时,由于其大小和刚性,细胞核成为移动的障碍。因此,移动细胞核是3D细胞迁移的关键步骤。在这篇综述中,我们讨论了细胞骨架和核骨架网络之间的协调是如何在复杂的3D空间中推动细胞核向前移动的。我们总结了最近的迁移模型,这些模型利用独特的分子串扰来驱动不同3D环境中的核迁移。此外,我们推测间接交联细胞骨架网络的蛋白质的作用、3D焦点粘连的作用以及这些蛋白质复合体如何驱动3D核迁移。
As cells move from two-dimensional (2D) surfaces into complex 3D environments, the nucleus becomes a barrier to movement due to its size and rigidity. Therefore, moving the nucleus is a key step in 3D cell migration. In this review, we discuss how coordination between cytoskeletal and nucleoskeletal networks is required to pull the nucleus forward through complex 3D spaces. We summarize recent migration models which utilize unique molecular crosstalk to drive nuclear migration through different 3D environments. In addition, we speculate about the role of proteins that indirectly crosslink cytoskeletal networks and the role of 3D focal adhesions and how these protein complexes may drive 3D nuclear migration.
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