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Ontogeny and Vulnerabilities of Drug-Tolerant Persisters in HER2+ Breast Cancer.

Authors :
Chang, Chewei Anderson
Jen, Jayu
Jiang, Shaowen
Sayad, Azin
Mer, Arvind Singh
Brown, Kevin R
Nixon, Allison M L
Dhabaria, Avantika
Tang, Kwan Ho
Venet, David
Sotiriou, Christos
Deng, Jiehui
Wong, Kwok Kin
Adams, Sylvia
Meyn, Peter
Heguy, Adriana
Skok, Jane Amanda
Tsirigos, Aristotelis
Ueberheide, Beatrix
Moffat, Jason
Singh, Abhyudai
Haibe-Kains, Benjamin
Khodadadi-Jamayran, Alireza
Neel, Benjamin G
Chang, Chewei Anderson
Jen, Jayu
Jiang, Shaowen
Sayad, Azin
Mer, Arvind Singh
Brown, Kevin R
Nixon, Allison M L
Dhabaria, Avantika
Tang, Kwan Ho
Venet, David
Sotiriou, Christos
Deng, Jiehui
Wong, Kwok Kin
Adams, Sylvia
Meyn, Peter
Heguy, Adriana
Skok, Jane Amanda
Tsirigos, Aristotelis
Ueberheide, Beatrix
Moffat, Jason
Singh, Abhyudai
Haibe-Kains, Benjamin
Khodadadi-Jamayran, Alireza
Neel, Benjamin G
Source :
Cancer Discovery, 12 (4
Publication Year :
2022

Abstract

Resistance to targeted therapies is an important clinical problem in HER2-positive (HER2+) breast cancer. "Drug-tolerant persisters" (DTP), a subpopulation of cancer cells that survive via reversible, nongenetic mechanisms, are implicated in resistance to tyrosine kinase inhibitors (TKI) in other malignancies, but DTPs following HER2 TKI exposure have not been well characterized. We found that HER2 TKIs evoke DTPs with a luminal-like or a mesenchymal-like transcriptome. Lentiviral barcoding/single-cell RNA sequencing reveals that HER2+ breast cancer cells cycle stochastically through a "pre-DTP" state, characterized by a G0-like expression signature and enriched for diapause and/or senescence genes. Trajectory analysis/cell sorting shows that pre-DTPs preferentially yield DTPs upon HER2 TKI exposure. Cells with similar transcriptomes are present in HER2+ breast tumors and are associated with poor TKI response. Finally, biochemical experiments indicate that luminal-like DTPs survive via estrogen receptor-dependent induction of SGK3, leading to rewiring of the PI3K/AKT/mTORC1 pathway to enable AKT-independent mTORC1 activation.<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
Cancer Discovery, 12 (4
Notes :
1 full-text file(s): application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1383737589
Document Type :
Electronic Resource