Resumen
The presence of BRAFV600E mutations is associated with poor prognosis in colorectal cancer (CRC). Although the FDA-approved combination of encorafenib and cetuximab provides clinical benefit in this population, only 22% of patients respond and most eventually develop resistance. This study investigated the mechanisms of resistance to PLX8394, a second-generation BRAF inhibitor. Using primary and established BRAFV600E CRC cells, we show that the development of resistance to PLX8394 results in cross-resistance of cells to encorafenib. Moreover, the acquired resistance is associated with increased proliferation, invasion, and upregulation of lipid metabolism, including increased expression of fatty acid synthase (FASN), a key enzyme of lipid synthesis. Yet, the combination of PLX8394 and FASN inhibitor TVB3664 has a synergistic effect on cell viability and colony formation in parental CRC cells, but not in PLX-resistant cells. Importantly, we demonstrate that addition of TVB3664 to the PLX8394 or encorafenib regimen significantly postpones development of resistance to BRAF-targeted therapy by inhibiting the cell cycle progression via a decrease in pRb (Ser780) and downregulation of E2F transcription factor and Cyclin D1 expression. Consistently, clinical data show that patients with BRAFV600E CRC who have high FASN expression in tumor tissues have higher expression of cell cycle-associated genes, including CDKs, E2F, CCDN1 (Cyclin D1), survivin, and MKI67. Collectively, these findings identify FASN-driven lipid metabolism as a critical mediator of resistance to BRAF-targeted therapy and suggest that incorporation of FASN inhibitors may enhance therapeutic efficacy and delay acquired resistance in BRAFV600E CRC.
| Idioma original | English |
|---|---|
| Número de artículo | 101283 |
| Publicación | Neoplasia (United States) |
| Volumen | 73 |
| DOI | |
| Estado | Published - mar 2026 |
Nota bibliográfica
Publisher Copyright:© 2026
Financiación
This work is supported by National Cancer Institute training grant T32 CA165990 (MEG) and R01 CA249734 (YYZ) , and by Colorectal Cancer Alliance Project Cure CRC Pilot Award (YYZ). Markey Cancer Center's (MCC) Biospecimen Procurement and Translational Pathology Shared Resource (SR) assisted in human tissue collection and preparation of tissue slides for immunohistochemistry; the MCC Flow Cytometry and Immune Monitoring SR assisted with cell cycle analysis; the MCC Redox Metabolism SR assisted with analysis of cellular respiration using Seahorse technology; and the MCC Biostatistics and Bioinformatics SR provided statistical analysis of data. All SRs are supported by National Cancer Institute grant P30 CA177558. The MCC Research Communications Office assisted with manuscript preparation. This work is supported by National Cancer Institute training grant T32 CA165990 (MEG) and R01 CA249734 (YYZ), and by Colorectal Cancer Alliance Project Cure CRC Pilot Award (YYZ). Markey Cancer Center’s (MCC) Biospecimen Procurement and Translational Pathology Shared Resource (SR) assisted in human tissue collection and preparation of tissue slides for immunohistochemistry; the MCC Flow Cytometry and Immune Monitoring SR assisted with cell cycle analysis; the MCC Redox Metabolism SR assisted with analysis of cellular respiration using Seahorse technology; and the MCC Biostatistics and Bioinformatics SR provided statistical analysis of data. All SRs are supported by National Cancer Institute grant P30 CA177558. The MCC Research Communications Office assisted with manuscript preparation.
| Financiadores | Número del financiador |
|---|---|
| Colorectal Cancer Alliance Project Cure CRC | |
| Colorectal Cancer Alliance | |
| National Cancer Institute postdoctoral training grant | T32 CA165990, R01 CA249734 |
| National Childhood Cancer Registry – National Cancer Institute | P30 CA177558, T32 CA165990, R01 CA249734 |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
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Good health and well being
ASJC Scopus subject areas
- Cancer Research
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