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PMID: 32675286 Published · ppublish English

Inhibition of the ATR kinase enhances 5-FU sensitivity independently of nonhomologous end-joining and homologous recombination repair pathways.

The Journal of biological chemistry ·Vol. 295 ·No. 37 ·2020-00-11

Ito SS, Nakagawa Y, Matsubayashi M, Sakaguchi YM, Kobashigawa S, Matsui TK, Nanaura H, Nakanishi M, Kitayoshi F, Kikuchi S, Kajihara A, Tamaki S, Sugie K, Kashino G, Takahashi A, Hasegawa M, Mori E, Kirita T

Abstract

The anticancer agent 5-fluorouracil (5-FU) is cytotoxic and often used to treat various cancers. 5-FU is thought to inhibit the enzyme thymidylate synthase, which plays a role in nucleotide synthesis and has been found to induce single- and double-strand DNA breaks. ATR Ser/Thr kinase (ATR) is a principal kinase in the DNA damage response and is activated in response to UV- and chemotherapeutic drug-induced DNA replication stress, but its role in cellular responses to 5-FU is unclear. In this study, we examined the effect of ATR inhibition on 5-FU sensitivity of mammalian cells. Using immunoblotting, we found that 5-FU treatment dose-dependently induced the phosphorylation of ATR at the autophosphorylation site Thr-1989 and thereby activated its kinase. Administration of 5-FU with a specific ATR inhibitor remarkably decreased cell survival, compared with 5-FU treatment combined with other major DNA repair kinase inhibitors. Of note, the ATR inhibition enhanced induction of DNA double-strand breaks and apoptosis in 5-FU-treated cells. Using gene expression analysis, we found that 5-FU induced the activation of the intra-S cell-cycle checkpoint. Cells lacking BRCA2 were sensitive to 5-FU in the presence of ATR inhibitor. Moreover, ATR inhibition enhanced the efficacy of the 5-FU treatment, independently of the nonhomologous end-joining and homologous recombination repair pathways. These findings suggest that ATR could be a potential therapeutic target in 5-FU-based chemotherapy.

Keywords
5-fluorouracil ATR serine/threonine kinase BRCA2 DNA damage response DNA double-strand breaks DNA repair anticancer drug antineoplastic agent apoptosis cancer cell cycle cell-cycle checkpoint chemotherapy homologous recombination
MeSH 主题词
Ataxia Telangiectasia Mutated Proteins/antagonists & inhibitors,genetics Cell Line, Tumor DNA End-Joining Repair/drug effects Drug Resistance, Neoplasm/drug effects Fluorouracil/pharmacology Humans Neoplasm Proteins/antagonists & inhibitors,genetics,metabolism Neoplasms/drug therapy,genetics,metabolism,pathology Protein Kinase Inhibitors/pharmacology Recombinational DNA Repair/drug effects Ultraviolet Rays
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
1083-351X
Published
2020-00-11
Language
English
Country/Region
United States
NLM ID
2985121R
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