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PMID: 41850232 Published · ppublish English

Polθ activity modulates sensitivity to standard therapies in DNMT3A-deficient leukemia.

Cell reports. Medicine ·Vol. 7 ·No. 3 ·2026-03-17

Le BV, Vekariya U, Toma MM, Nieborowska-Skorska M, Caron MC, Gozdecka M, Haydar Z, Walsh M, Ghosh J, Vaughan-Williams E, Podszywalow-Bartnicka P, Kukuyan AM, Ziolkowska S, Atkins J, Hadzijusufovic E, Chandramouly G, Nejati R, Piwocka K, Pomerantz R, Vassiliou GS, Huntly BJP, Valent P, Wasik M, Bellacosa A, Masson JY, Gupta GP, Challen GA, Skorski T

Abstract

Myeloid malignancies carrying somatic DNMT3A mutations (DNMT3Amut) are refractory to standard therapy. DNMT3Amut leukemia cells accumulate toxic DNA double-strand breaks (DSBs) and stalled replication forks, rendering them dependent on DNA damage response (DDR). We report here that DNA polymerase theta (Polθ), a key element in DSB repair by end-joining (Polθ-mediated end-joining [TMEJ]) and in fork restarting, promotes survival and proliferation of DNMT3Amut leukemia cells. Polθ is overexpressed in DNMT3Amut leukemia cells due to abrogation of PARP1 PARylation-dependent UBE2O E3 ligase-mediated ubiquitination and proteasomal degradation of Polθ. In addition, PARP1-mediated recruitment of the SMARCAD1-MSH2/MSH3 repressive complex to DSBs is diminished in DNMT3Amut leukemia cells, which facilitates association of Polθ with DNA damage. Polθ inhibitors enhance the anti-leukemic effects of standard drugs such as FLT3 kinase inhibitor quizartinib, cytarabine ± doxorubicin, and etoposide in vitro and in mice with DNMT3Amut leukemia. Altogether, Polθ is an attractive target in DNMT3Amut hematological malignancies.

Keywords
DNA polymerase theta DNMT3A-deficient acute myeloid leukemia PARP1 TMEJ replication fork ubiquitination
Article Info
Journal
Cell reports. Medicine
Abbr.
Cell Rep Med
ISSN
2666-3791
Published
2026-03-17
Language
English
Country/Region
United States
NLM ID
101766894
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