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RAS mutations in cutaneous squamous-cell carcinomas in patients treated with BRAF inhibitors
Fei Su1, Amaya Viros, Carla Milagre
1Hoffmann-La Roche, Nutley, NJ, USA.
Background:
Cutaneous squamous-cell carcinomas and keratoacanthomas are common findings in patients treated with BRAF inhibitors.
Methods:
We performed a molecular analysis to identify oncogenic mutations (HRAS, KRAS, NRAS, CDKN2A, and TP53) in the lesions from patients treated with the BRAF inhibitor vemurafenib. An analysis of an independent validation set and functional studies with BRAF inhibitors in the presence of the prevalent RAS mutation was also performed.
Results:
Among 21 tumor samples, 13 had RAS mutations (12 in HRAS). In a validation set of 14 samples, 8 had RAS mutations (4 in HRAS). Thus, 60% (21 of 35) of the specimens harbored RAS mutations, the most prevalent being HRAS Q61L. Increased proliferation of HRAS Q61L-mutant cell lines exposed to vemurafenib was associated with mitogen-activated protein kinase (MAPK)-pathway signaling and activation of ERK-mediated transcription. In a mouse model of HRAS Q61L-mediated skin carcinogenesis, the vemurafenib analogue PLX4720 was not an initiator or a promoter of carcinogenesis but accelerated growth of the lesions harboring HRAS mutations, and this growth was blocked by concomitant treatment with a MEK inhibitor.
Conclusions:
Mutations in RAS, particularly HRAS, are frequent in cutaneous squamous-cell carcinomas and keratoacanthomas that develop in patients treated with vemurafenib. The molecular mechanism is consistent with the paradoxical activation of MAPK signaling and leads to accelerated growth of these lesions. (Funded by Hoffmann-La Roche and others; ClinicalTrials.gov numbers, NCT00405587, NCT00949702, NCT01001299, and NCT01006980.).
Insights
RAS mutations, especially HRAS, are common in skin cancers like squamous cell carcinoma and keratoacanthoma in patients on vemurafenib. This paradoxical MAPK pathway activation accelerates lesion growth, but MEK inhibitors can block it.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- BRAF inhibitors like vemurafenib are associated with cutaneous squamous-cell carcinomas and keratoacanthomas.
- Understanding the molecular drivers of these lesions is crucial for patient management.
Purpose of the Study:
- To investigate oncogenic mutations in skin lesions from patients treated with vemurafenib.
- To elucidate the molecular mechanisms underlying vemurafenib-induced skin tumors.
Main Methods:
- Molecular analysis of tumor samples for mutations in HRAS, KRAS, NRAS, CDKN2A, and TP53.
- Functional studies using BRAF inhibitors and RAS-mutant cell lines.
- In vivo studies using a mouse model of skin carcinogenesis.
Main Results:
- RAS mutations, predominantly HRAS Q61L, were identified in 60% of the analyzed lesions.
- Vemurafenib treatment led to increased proliferation of HRAS Q61L-mutant cells via MAPK/ERK signaling.
- In a mouse model, vemurafenib analogue PLX4720 accelerated HRAS-mutant lesion growth, which was inhibited by a MEK inhibitor.
Conclusions:
- RAS mutations, particularly HRAS, are frequent in vemurafenib-associated skin cancers.
- Paradoxical MAPK pathway activation drives accelerated lesion growth.
- Targeting MEK offers a potential therapeutic strategy to counteract this effect.
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