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对后期桥向分裂后期检验点发出信号的机制性洞察。

Mechanistic insight into anaphase bridge signaling to the abscission checkpoint.

作者信息

Singh Manika I, Rajendraprasad Girish, Katopodis Vasileios, Cui Rui, Barisic Marin, Bhowmick Rahul, Hickson Ian D

机构信息

Center for Chromosome Stability, Department of Cellular and Molecular Medicine, University of Copenhagen, Blegdamsvej 3B, 2200, Copenhagen N, Denmark.

Centre for Genomic Medicine, Rigshospitalet, Blegdamsvej 9, 2100, Copenhagen, Denmark.

出版信息

EMBO J. 2025 May 12. doi: 10.1038/s44318-025-00453-w.

Abstract

During cytokinesis in human cells, a failure to resolve persistent DNA bridges that span the cell-division plane maintains the Aurora B-dependent abscission checkpoint in an active state. However, the molecular mechanism by which unresolved sister-chromatid bridging signals to this checkpoint is poorly defined. Here, we define an essential role for the Bloom's syndrome helicase, BLM, in signaling to the abscission-checkpoint machinery in response to replication stress through the conversion of dsDNA bridges into RPA-coated ssDNA. RPA then promotes ATR-CHK1 signaling to Aurora B, utilizing a kinase cascade shared with the S-phase checkpoint. BLM-deficient cells ultimately abandon cytokinesis in response to replication stress, which promotes binucleation and hence aneuploidy. Considering that aneuploidy is a hallmark of cancer, we propose that this role for BLM in cytokinesis is a plausible reason for cancer predisposition in Bloom's syndrome individuals. Consistent with this, BLM deficiency promotes anchorage-independent growth of non-cancer cells.

摘要

在人类细胞的胞质分裂过程中,未能解决横跨细胞分裂平面的持久性DNA桥会使依赖极光激酶B(Aurora B)的切割检查点维持在激活状态。然而,未解决的姐妹染色单体桥向该检查点发出信号的分子机制尚不清楚。在此,我们确定了布鲁姆综合征解旋酶BLM在响应复制应激时向切割检查点机制发出信号中的关键作用,该作用通过将双链DNA桥转化为单链结合蛋白(RPA)包被的单链DNA来实现。然后,RPA利用与S期检查点共享的激酶级联反应,促进ATR-CHK1信号传导至极光激酶B。BLM缺陷型细胞最终会因复制应激而放弃胞质分裂,这会促进双核形成,进而导致非整倍体。鉴于非整倍体是癌症的一个标志,我们认为BLM在胞质分裂中的这一作用是布鲁姆综合征个体易患癌症的一个合理原因。与此一致的是,BLM缺陷会促进非癌细胞的锚定非依赖性生长。

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