细胞核在 G2-M 过渡期间的机械生物学。

Nucleus (Austin, Tex.) Pub Date : 2024-12-01 Epub Date: 2024-03-27 DOI:10.1080/19491034.2024.2330947
Joana T Lima, Jorge G Ferreira
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引用次数: 0

摘要

细胞行为不断受到机械力的影响。这些力穿过细胞骨架到达细胞核,在那里触发机械传导途径,从而调节下游生化事件。因此,细胞核已成为细胞对机械刺激反应的调节器。细胞周期的进展受细胞周期蛋白-CDK 复合物的调控。最近的研究表明,这些生化通路受到机械信号的影响,凸显了细胞机械和细胞周期调控之间的相互依存关系。特别是,从 G2 到有丝分裂(G2-M)的转变过程中,核结构和组织发生了显著变化,从核孔复合体(NPC)和核薄层解体到染色体凝结。这些机械活性核成分的重塑表明,有丝分裂的进入对力特别敏感。在此,我们探讨了机械力如何与细胞核相互影响,以决定 G2-M 过渡的时间和效率。最后,我们将讨论核机械的失调如何对有丝分裂产生影响。
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Mechanobiology of the nucleus during the G2-M transition.

Cellular behavior is continuously influenced by mechanical forces. These forces span the cytoskeleton and reach the nucleus, where they trigger mechanotransduction pathways that regulate downstream biochemical events. Therefore, the nucleus has emerged as a regulator of cellular response to mechanical stimuli. Cell cycle progression is regulated by cyclin-CDK complexes. Recent studies demonstrated these biochemical pathways are influenced by mechanical signals, highlighting the interdependence of cellular mechanics and cell cycle regulation. In particular, the transition from G2 to mitosis (G2-M) shows significant changes in nuclear structure and organization, ranging from nuclear pore complex (NPC) and nuclear lamina disassembly to chromosome condensation. The remodeling of these mechanically active nuclear components indicates that mitotic entry is particularly sensitive to forces. Here, we address how mechanical forces crosstalk with the nucleus to determine the timing and efficiency of the G2-M transition. Finally, we discuss how the deregulation of nuclear mechanics has consequences for mitosis.

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