FGFR-inhibitor-mediated dismissal of SWI/SNF complexes from YAP-dependent enhancers induces adaptive therapeutic resistance
- Yihao Li,
- Xintao Qiu,
- Xiaoqing Wang,
- Hui Liu,
- ,
- Alok K. Tewari
- Harvard Medical School,
- Dana-Farber Cancer Institute,
- Harvard T.H. Chan School of Public Health
Abstract
How cancer cells adapt to evade the therapeutic effects of drugs targeting oncogenic drivers is poorly understood. Here we report an epigenetic mechanism leading to the adaptive resistance of triple-negative breast cancer (TNBC) to fibroblast growth factor receptor (FGFR) inhibitors. Prolonged FGFR inhibition suppresses the function of BRG1-dependent chromatin remodelling, leading to an epigenetic state that derepresses YAP-associated enhancers. These chromatin changes induce the expression of several amino acid transporters, resulting in increased intracellular levels of specific amino acids that reactivate mTORC1. Consistent with this mechanism, addition of mTORC1 or YAP inhibitors to FGFR blockade synergistically attenuated the growth of TNBC patient-derived xenograft models. Collectively, these findings reveal a feedback loop involving an epigenetic state transition and metabolic reprogramming that leads to adaptive therapeutic resistance and provides potential therapeutic strategies to overcome this mechanism of resistance.
Sustainable Development Goals
- SDG 3 Good Health and Well
Bibliographic Information
Output type
Original language
EnglishPages from-to (Number of pages)
Pages 1187-1198 (12 pages)Journal (Volume, Issue Number)
Nature Cell Biology (Volume 23, Issue 11)Publication milestones
- Published - 11/2021
Publication status
ISSN
1465-7392Publication IDs
- Scopus: 85118628663
- PubMed: 34737445
