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Updated: May 1, 2026

Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
BRAF and NRAS mutations are heterogeneous and not mutually exclusive in nodular melanoma
Caterina Chiappetta1, Ilaria Proietti, Valentina Soccodato
1*UOC of Pathology, Department of Medical-Surgical Sciences and Bio-Technologies, Sapienza University of Rome, Polo Pontino, I.C.O.T, Latina †UOC of Dermatology "Daniele Innocenzi," Department of Medical-Surgical Sciences and Bio-Technologies, Sapienza University of Rome, Fiorini Hospital, Polo Pontino, Terracina, Italy.
Abstract:
Inhibitors of RAF inhibit the MAPK pathway that plays an important role in the development and progression of those melanoma carrying the V600E BRAF mutation, but there's a subset of such patients who do not respond to the therapy. Various mechanisms of drug resistance have been proposed which include the clonal heterogeneity of the tumor. We have studied a population of nodular melanoma to investigate the intratumor and intertumor heterogeneity by Laser Capture Microdissection (LCM) analysis. Our results showed that BRAF and NRAS mutations were detected in 47% and 33% of nodular melanoma, respectively, and that there is a discrepancy in mutational pattern of tumoral sample because in the 36% of patients a different mutation, in at least 1 area of the tumor, was found by LCM analysis, giving evidence of the presence of different clonal cells populations. Moreover, we found that mutations in BRAF and NRAS are not mutually exclusive because they were simultaneously present in the same tumor specimens and we observed that when the 2 different mutations were present one is a high-frequency mutation and the other is a low-frequency mutation. This was more evident in lymphonodal metastasis that resulted from wild type to mutational analysis, but showed different mutations following LCM analysis. Therefore, we believed that, when primary tumoral sample results negative to mutational analysis, if it is possible, metastases should be investigated to verify the presence of mutations. Generally, it should be searched for other mutations, in addition to BRAF V600E, so as to better understand the mechanism of drug resistance.
Insights
Melanoma patients with BRAF mutations may not respond to RAF inhibitors due to tumor heterogeneity. Investigating mutations in metastases can reveal resistance mechanisms and guide treatment for drug-resistant melanoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The MAPK pathway is crucial for melanoma development, particularly in tumors with BRAF V600E mutations.
- RAF inhibitors target this pathway but face challenges with patient non-response and drug resistance.
- Tumor clonal heterogeneity is a proposed mechanism contributing to therapeutic resistance.
Purpose of the Study:
- To investigate intratumor and intertumor heterogeneity in nodular melanoma.
- To identify the prevalence and patterns of BRAF and NRAS mutations within melanoma tumors.
- To explore the implications of tumor heterogeneity for RAF inhibitor resistance.
Main Methods:
- Laser Capture Microdissection (LCM) was employed to analyze distinct regions within tumor samples.
- Mutational analysis was performed on dissected tumor areas to detect genetic alterations.
- BRAF and NRAS mutations were specifically assessed in primary tumors and lymph node metastases.
Main Results:
- BRAF and NRAS mutations were found in 47% and 33% of nodular melanoma cases, respectively.
- LCM analysis revealed discrepancies in mutational patterns within 36% of tumors, indicating diverse clonal populations.
- BRAF and NRAS mutations were not mutually exclusive and could co-exist within the same tumor, often with differing frequencies.
Conclusions:
- Melanoma exhibits significant intratumor and intertumor heterogeneity, impacting treatment response.
- Investigating metastases for mutations, especially when primary tumors are negative, is recommended for identifying resistance mechanisms.
- Expanding mutation screening beyond BRAF V600E is essential for understanding and overcoming drug resistance in melanoma.
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