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Tamoxifen induces PI3K activation in uterine cancer.

Kirsten Kübler ,
Agostina Nardone ,
Shankara Anand ,
Daniel Gurevich ,
Jianjiong Gao ,
Marjolein Droog ,
Francisco Hermida-Prado ,
Tara Akhshi ,
Ariel Feiglin ,
Avery S Feit ,
Gabriella Cohen Feit ,
Gwen Dackus ,
Matthew Pun ,
Yanan Kuang ,
Justin Cha ,
Mendy Miller ,
Sebastian Gregoricchio ,
Mirthe Lanfermeijer ,
Sten Cornelissen ,
William J Gibson ,
Cloud P Paweletz ,
Eliezer M Van Allen ,
Flora E van Leeuwen ,
Petra M Nederlof ,
Quang-Dé Nguyen ,
Marian J E Mourits ,
Milan Radovich ,
Ignaty Leshchiner ,
Chip Stewart ,
Ursula A Matulonis ,
Wilbert Zwart ,
Yosef E Maruvka ,
Gad Getz ,
Rinath Jeselsohn

Abstract

Mutagenic processes and clonal selection contribute to the development of therapy-associated secondary neoplasms, a known complication of cancer treatment. The association between tamoxifen therapy and secondary uterine cancers is uncommon but well established; however, the genetic mechanisms underlying tamoxifen-driven tumorigenesis remain unclear. We find that oncogenic PIK3CA mutations, common in spontaneously arising estrogen-associated de novo uterine cancer, are significantly less frequent in tamoxifen-associated tumors. In vivo, tamoxifen-induced estrogen receptor stimulation activates phosphoinositide 3-kinase (PI3K) signaling in normal mouse uterine tissue, potentially eliminating the selective benefit of PI3K-activating mutations in tamoxifen-associated uterine cancer. Together, we present a unique pathway of therapy-associated carcinogenesis in which tamoxifen-induced activation of the PI3K pathway acts as a non-genetic driver event, contributing to the multistep model of uterine carcinogenesis. While this PI3K mechanism is specific to tamoxifen-associated uterine cancer, the concept of treatment-induced signaling events may have broader applicability to other routes of tumorigenesis.

More about this publication

Nature genetics

Volume 57
Issue nr. 9
Pages 2192-2202
Publication date 01-09-2025

Full text links

Publisher website (DOI) 10.1038/s41588-025-02308-w
Europe PubMed Central 40846762
Pubmed 40846762

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