Reducing MYC's transcriptional footprint unveils a good prognostic gene signature in melanoma

Author:

Zacarías-Fluck Mariano F.ORCID,Massó-Vallés DanielORCID,Giuntini Fabio,González-Larreategui Íñigo,Kaur JastrinjanORCID,Casacuberta-Serra Sílvia,Jauset ToniORCID,Martínez-Martín SandraORCID,Martín-Fernández GénesisORCID,Serrano del Pozo ErikaORCID,Foradada LaiaORCID,Grueso Judit,Nonell LaraORCID,Beaulieu Marie-EveORCID,Whitfield Jonathan R.ORCID,Soucek LauraORCID

Abstract

MYC's key role in oncogenesis and tumor progression has long been established for most human cancers. In melanoma, its deregulated activity by amplification of 8q24 chromosome or by upstream signaling coming from activating mutations in the RAS/RAF/MAPK pathway—the most predominantly mutated pathway in this disease—turns MYC into not only a driver but also a facilitator of melanoma progression, with documented effects leading to an aggressive clinical course and resistance to targeted therapy. Here, by making use of Omomyc, the most characterized MYC inhibitor to date that has just successfully completed a phase I clinical trial, we show for the first time that MYC inhibition in melanoma induces remarkable transcriptional modulation, resulting in severely compromised tumor growth and a clear abrogation of metastatic capacity independently of the driver mutation. By reducing MYC's transcriptional footprint in melanoma, Omomyc elicits gene expression profiles remarkably similar to those of patients with good prognosis, underlining the therapeutic potential that such an approach could eventually have in the clinic in this dismal disease.

Funder

Juan de la Cierva Programme

Spanish Ministry of Economy and Competitiveness

Fundació La Marató de TV3

Spanish Ministry of Science and Innovation PFIS

Generalitat de Catalunya

Contractació de Personal Investigador Novell

Spanish Ministry of Science and Innovation

Retos-Colaboración 2019

La Marató TV3

Generalitat de Catalunya AGAUR 2017

European Research Council

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

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