Balafouti Sofia, Kabouraki Maria, Zachos George, Petsalaki Eleni
Department of Biology, University of Crete, Vassilika Vouton, Heraklion, 70013, Greece.
EMBO J. 2025 Sep 9. doi: 10.1038/s44318-025-00565-3.
In the presence of chromatin bridges in cytokinesis, human cells retain actin-rich structures (actin patches) at the base of the intercellular canal to prevent chromosome breakage. Here, we show that daughter nuclei connected by chromatin bridges are under mechanical tension that requires interaction of the nuclear membrane Sun1/2-Nesprin-2 Linker of Nucleoskeleton and Cytoskeleton (LINC) complex with the actin cytoskeleton, and an intact nuclear lamina. This nuclear tension promotes accumulation of Sun1/2-Nesprin-2 proteins at the base of chromatin bridges and local enrichment of the RhoA-activator PDZ RhoGEF through PDZ-binding to cytoplasmic Nesprin-2 spectrin repeats. In turn, PDZ RhoGEF activates the small GTPase RhoA and downstream ROCK-LIMK-Cofilin and mDia1 signaling to generate actin patches and prevent chromatin bridge breakage in cytokinesis. These findings identify a novel mechanosensing mechanism by which chromatin bridges promote remodeling of the actin cytoskeleton, through tension-induced activation of LINC-PDZ RhoGEF-RhoA signaling, to generate actin patches to preserve genome integrity.
在胞质分裂过程中出现染色质桥时,人类细胞会在细胞间通道底部保留富含肌动蛋白的结构(肌动蛋白斑),以防止染色体断裂。在此,我们表明,由染色质桥连接的子核处于机械张力之下,这种张力需要核膜Sun1/2-Nesprin-2核骨架与细胞骨架连接复合体(LINC复合体)与肌动蛋白细胞骨架以及完整的核纤层相互作用。这种核张力促进Sun1/2-Nesprin-2蛋白在染色质桥底部积累,并通过与细胞质Nesprin-2血影蛋白重复序列的PDZ结合,使RhoA激活剂PDZ RhoGEF在局部富集。反过来,PDZ RhoGEF激活小GTP酶RhoA以及下游的ROCK-LIMK-丝切蛋白和mDia1信号传导,以生成肌动蛋白斑并防止胞质分裂过程中染色质桥断裂。这些发现确定了一种新的机械传感机制,通过这种机制,染色质桥通过张力诱导的LINC-PDZ RhoGEF-RhoA信号激活促进肌动蛋白细胞骨架重塑,从而生成肌动蛋白斑以维持基因组完整性。