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Therapy-induced APOBEC3A drives evolution of persistent cancer cells

Authors :
Isozaki, Hideko
Sakhtemani, Ramin
Abbasi, Ammal
Nikpour, Naveed
Stanzione, Marcello
Oh, Sunwoo
Langenbucher, Adam
Monroe, Susanna
Su, Wenjia
Cabanos, Heidie Frisco
Siddiqui, Faria M.
Phan, Nicole
Jalili, Pégah
Timonina, Daria
Bilton, Samantha
Gomez-Caraballo, Maria
Archibald, Hannah L.
Nangia, Varuna
Dionne, Kristin
Riley, Amanda
Lawlor, Matthew
Banwait, Mandeep Kaur
Cobb, Rosemary G.
Zou, Lee
Dyson, Nicholas J.
Ott, Christopher J.
Benes, Cyril
Getz, Gad
Chan, Chang S.
Shaw, Alice T.
Gainor, Justin F.
Lin, Jessica J.
Sequist, Lecia V.
Piotrowska, Zofia
Yeap, Beow Y.
Engelman, Jeffrey A.
Lee, Jake June-Koo
Maruvka, Yosef E.
Buisson, Rémi
Lawrence, Michael S.
Hata, Aaron N.
Source :
Nature; August 2023, Vol. 620 Issue: 7973 p393-401, 9p
Publication Year :
2023

Abstract

Acquired drug resistance to anticancer targeted therapies remains an unsolved clinical problem. Although many drivers of acquired drug resistance have been identified1–4, the underlying molecular mechanisms shaping tumour evolution during treatment are incompletely understood. Genomic profiling of patient tumours has implicated apolipoprotein B messenger RNA editing catalytic polypeptide-like (APOBEC) cytidine deaminases in tumour evolution; however, their role during therapy and the development of acquired drug resistance is undefined. Here we report that lung cancer targeted therapies commonly used in the clinic can induce cytidine deaminase APOBEC3A (A3A), leading to sustained mutagenesis in drug-tolerant cancer cells persisting during therapy. Therapy-induced A3A promotes the formation of double-strand DNA breaks, increasing genomic instability in drug-tolerant persisters. Deletion of A3A reduces APOBEC mutations and structural variations in persister cells and delays the development of drug resistance. APOBEC mutational signatures are enriched in tumours from patients with lung cancer who progressed after extended responses to targeted therapies. This study shows that induction of A3A in response to targeted therapies drives evolution of drug-tolerant persister cells, suggesting that suppression of A3A expression or activity may represent a potential therapeutic strategy in the prevention or delay of acquired resistance to lung cancer targeted therapy.

Details

Language :
English
ISSN :
00280836 and 14764687
Volume :
620
Issue :
7973
Database :
Supplemental Index
Journal :
Nature
Publication Type :
Periodical
Accession number :
ejs63471442
Full Text :
https://doi.org/10.1038/s41586-023-06303-1