The Driverless Triple-Wild-Type (BRAF, RAS, KIT) Cutaneous Melanoma: Whole Genome Sequencing Discoveries

Author:

Pipek Orsolya1ORCID,Vizkeleti Laura23ORCID,Doma Viktória4,Alpár Donát5ORCID,Bödör Csaba5,Kárpáti Sarolta4,Timar Jozsef2

Affiliation:

1. Department of Physics of Complex Systems, ELTE Eötvös Loránd University, 1053 Budapest, Hungary

2. Department of Pathology, Forensic and Insurance Medicine, Semmelweis University, 1085 Budapest, Hungary

3. Department of Bioinformatics, Semmelweis University, 1085 Budapest, Hungary

4. Department of Dermatology, Venerology and Dermatooncology, Semmelweis University, 1085 Budapest, Hungary

5. Department of Pathology and Experimental Cancer Research, Semmelweis University, 1085 Budapest, Hungary

Abstract

The genetic makeup of the triple-wild-type melanoma (BRAF, NRAS and NF1) has been known for some time, but those studies grouped together rare histopathological versions with common ones, as well as mucosal and even uveal ones. Here we used whole genome sequencing to genetically characterize the triple-wild-type melanoma (TWM), termed here as BRAF, RAS and KIT wild type (the most frequent oncogenic drivers of skin melanoma), using the most common histological forms and excluding rare ones. All these tumors except one were clearly induced by UV based on the mutational signature. The tumor mutational burden was low in TWM, except in the NF1 mutant forms, and a relatively high frequency of elevated LOH scores suggested frequent homologue recombination deficiency, but this was only confirmed by the mutation signature in one case. Furthermore, all these TWMs were microsatellite-stabile. In this driverless setting, we revealed rare oncogenic drivers known from melanoma or other cancer types and identified rare actionable tyrosine kinase mutations in NTRK1, RET and VEGFR1. Mutations of TWM identified genes involved in antitumor immunity (negative and positive predictors of immunotherapy), Ca++ and BMP signaling. The two regressed melanomas of this cohort shared a 17-gene mutation signature, containing genes involved in antitumor immunity and several cell surface receptors. Even with this comprehensive genomic approach, a few cases remained driverless, suggesting that unrecognized drivers are hiding among passenger mutations.

Funder

NKFIH, Hungary

EU’s Horizon 2020 research and innovation program

ános Bolyai Research Scholarship program

Hungarian Academy of Sciences

New National Excellence Program of the Ministry for Innovation and Technology

the Kerpel Talent Award of Semmelweis University

ELIXIR Hungary

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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