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FBXW7-loss Sensitizes Cells to ATR Inhibition Through Induced Mitotic Catastrophe.

Authors :
O'Brien S
Ubhi T
Wolf L
Gandhi K
Lin S
Chaudary N
Dhani NC
Milosevic M
Brown GW
Angers S
Source :
Cancer research communications [Cancer Res Commun] 2023 Dec 21; Vol. 3 (12), pp. 2596-2607.
Publication Year :
2023

Abstract

FBXW7 is a commonly mutated tumor suppressor gene that functions to regulate numerous oncogenes involved in cell-cycle regulation. Genome-wide CRISPR fitness screens identified a signature of DNA repair and DNA damage response genes as required for the growth of FBXW7-knockout cells. Guided by these findings, we show that FBXW7-mutant cells have high levels of replication stress, which results in a genotype-specific vulnerability to inhibition of the ATR signaling pathway, as these mutant cells become heavily reliant on a robust S-G2 checkpoint. ATR inhibition induces an accelerated S-phase, leading to mitotic catastrophe and cell death caused by the high replication stress present in FBXW7-/- cells. In addition, we provide evidence in cell and organoid studies, and mining of publicly available high-throughput drug screening efforts, that this genotype-specific vulnerability extends to multiple types of cancer, providing a rational means of identifying responsive patients for targeted therapy.<br />Significance: We have elucidated the synthetic lethal interactions between FBXW7 mutation and DNA damage response genes, and highlighted the potential of ATR inhibitors as targeted therapies for cancers harboring FBXW7 alterations.<br /> (© 2023 The Authors; Published by the American Association for Cancer Research.)

Details

Language :
English
ISSN :
2767-9764
Volume :
3
Issue :
12
Database :
MEDLINE
Journal :
Cancer research communications
Publication Type :
Academic Journal
Accession number :
38032106
Full Text :
https://doi.org/10.1158/2767-9764.CRC-23-0306