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Replication stress promotes cell elimination by extrusion

Authors :
Dwivedi, Vivek K.
Pardo-Pastor, Carlos
Droste, Rita
Kong, Ji Na
Tucker, Nolan
Denning, Daniel P.
Rosenblatt, Jody
Horvitz, H. Robert
Source :
Nature. May 27, 2021, Vol. 593 Issue 7860, p591, 6 p.
Publication Year :
2021

Abstract

Author(s): Vivek K. Dwivedi [sup.1] , Carlos Pardo-Pastor [sup.2] , Rita Droste [sup.1] , Ji Na Kong [sup.1] , Nolan Tucker [sup.1] , Daniel P. Denning [sup.1] [sup.3] , Jody [...]<br />Cell extrusion is a mechanism of cell elimination that is used by organisms as diverse as sponges, nematodes, insects and mammals.sup.1-3. During extrusion, a cell detaches from a layer of surrounding cells while maintaining the continuity of that layer.sup.4. Vertebrate epithelial tissues primarily eliminate cells by extrusion, and the dysregulation of cell extrusion has been linked to epithelial diseases, including cancer.sup.1,5. The mechanisms that drive cell extrusion remain incompletely understood. Here, to analyse cell extrusion by Caenorhabditis elegans embryos.sup.3, we conducted a genome-wide RNA interference screen, identified multiple cell-cycle genes with S-phase-specific function, and performed live-imaging experiments to establish how those genes control extrusion. Extruding cells experience replication stress during S phase and activate a replication-stress response via homologues of ATR and CHK1. Preventing S-phase entry, inhibiting the replication-stress response, or allowing completion of the cell cycle blocked cell extrusion. Hydroxyurea-induced replication stress.sup.6,7 triggered ATR-CHK1- and p53-dependent cell extrusion from a mammalian epithelial monolayer. We conclude that cell extrusion induced by replication stress is conserved among animals and propose that this extrusion process is a primordial mechanism of cell elimination with a tumour-suppressive function in mammals. A cell-cycle checkpoint triggers the extrusion of both nematode and mammalian cells experiencing replication stress.

Details

Language :
English
ISSN :
00280836
Volume :
593
Issue :
7860
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.663059489
Full Text :
https://doi.org/10.1038/s41586-021-03526-y