DNA Replication Stress Induced by Trifluridine Determines Tumor Cell Fate According to p53 Status.


Journal

Molecular cancer research : MCR
ISSN: 1557-3125
Titre abrégé: Mol Cancer Res
Pays: United States
ID NLM: 101150042

Informations de publication

Date de publication:
09 2020
Historique:
received: 25 10 2019
revised: 15 04 2020
accepted: 21 05 2020
pubmed: 30 5 2020
medline: 11 8 2021
entrez: 30 5 2020
Statut: ppublish

Résumé

DNA replication stress (DRS) is a predominant cause of genome instability, a driver of tumorigenesis and malignant progression. Nucleoside analogue-type chemotherapeutic drugs introduce DNA damage and exacerbate DRS in tumor cells. However, the mechanisms underlying the antitumor effect of these drugs are not fully understood. Here, we show that the fluorinated thymidine analogue trifluridine (FTD), an active component of the chemotherapeutic drug trifluridine/tipiracil, delayed DNA synthesis by human replicative DNA polymerases by acting both as an inefficient deoxyribonucleotide triphosphate source (FTD triphosphate) and as an obstacle base (trifluorothymine) in the template DNA strand, which caused DRS. In cells, FTD decreased the thymidine triphosphate level in the dNTP pool and increased the FTD triphosphate level, resulting in the activation of DRS-induced cellular responses during S-phase. In addition, replication protein A-coated single-stranded DNA associated with FancD2 and accumulated after tumor cells completed S-phase. Finally, FTD activated the p53-p21 pathway and suppressed tumor cell growth by inducing cellular senescence via mitosis skipping. In contrast, tumor cells that lost wild-type p53 underwent apoptotic cell death via aberrant late mitosis with severely impaired separation of sister chromatids. These results demonstrate that DRS induced by a nucleoside analogue-type chemotherapeutic drug suppresses tumor growth irrespective of p53 status by directing tumor cell fate toward cellular senescence or apoptotic cell death according to p53 status. IMPLICATIONS: Chemotherapeutic drugs that increase DRS during S-phase but allow tumor cells to complete S-phase may have significant antitumor activity even when functional p53 is lost.

Identifiants

pubmed: 32467171
pii: 1541-7786.MCR-19-1051
doi: 10.1158/1541-7786.MCR-19-1051
doi:

Substances chimiques

Antiviral Agents 0
Tumor Suppressor Protein p53 0
Trifluridine RMW9V5RW38

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

1354-1366

Informations de copyright

©2020 American Association for Cancer Research.

Auteurs

Yuki Kataoka (Y)

Department of Molecular Cancer Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.
Taiho Pharmaceutical Co. Ltd., Tokyo, Japan.

Makoto Iimori (M)

Department of Molecular Cancer Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.

Ryo Fujisawa (R)

Division of Biological Sciences, Department of Biology, Faculty of Sciences, Kyushu University, Fukuoka, Japan.

Tomomi Morikawa-Ichinose (T)

Metabolic Profiling Group, Innovation Center for Medical Redox Navigation, Kyushu University, Fukuoka, Japan.

Shinichiro Niimi (S)

Innovative Anticancer Strategy for Therapeutics and Diagnosis Group, Innovation Center for Medical Redox Navigation, Kyushu University, Fukuoka, Japan.

Takeshi Wakasa (T)

Department of Molecular Cancer Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.
Taiho Pharmaceutical Co. Ltd., Tokyo, Japan.

Hiroshi Saeki (H)

Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Department of General Surgical Science, Graduate School of Medicine, Gunma University, Maebashi, Japan.

Eiji Oki (E)

Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.

Daisuke Miura (D)

Metabolic Profiling Group, Innovation Center for Medical Redox Navigation, Kyushu University, Fukuoka, Japan.
Advanced Biomeasurements Research Group, Biomedical Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba, Japan.

Toshiki Tsurimoto (T)

Division of Biological Sciences, Department of Biology, Faculty of Sciences, Kyushu University, Fukuoka, Japan.

Yoshihiko Maehara (Y)

Innovative Anticancer Strategy for Therapeutics and Diagnosis Group, Innovation Center for Medical Redox Navigation, Kyushu University, Fukuoka, Japan.
Department of Surgery and Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Kyushu Central Hospital of the Mutual Aid Association of Public School Teachers, Fukuoka, Japan.

Hiroyuki Kitao (H)

Department of Molecular Cancer Biology, Graduate School of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan. hkitao@phar.kyushu-u.ac.jp.
Innovative Anticancer Strategy for Therapeutics and Diagnosis Group, Innovation Center for Medical Redox Navigation, Kyushu University, Fukuoka, Japan.

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Classifications MeSH