Enhanced BRAF engagement by NRAS mutants capable of promoting melanoma initiation

Author:

Murphy Brandon M.,Terrell Elizabeth M.,Chirasani Venkat R.,Weiss Tirzah J.,Lew Rachel E.,Holderbaum Andrea M.ORCID,Dhakal Aastha,Posada Valentina,Fort Marie,Bodnar Michael S.,Carey Leiah M.,Chen Min,Burd Craig J.,Coppola VincenzoORCID,Morrison Deborah K.ORCID,Campbell Sharon L.ORCID,Burd Christin E.ORCID

Abstract

AbstractA distinct profile of NRAS mutants is observed in each tumor type. It is unclear whether these profiles are determined by mutagenic events or functional differences between NRAS oncoproteins. Here, we establish functional hallmarks of NRAS mutants enriched in human melanoma. We generate eight conditional, knock-in mouse models and show that rare melanoma mutants (NRAS G12D, G13D, G13R, Q61H, and Q61P) are poor drivers of spontaneous melanoma formation, whereas common melanoma mutants (NRAS Q61R, Q61K, or Q61L) induce rapid tumor onset with high penetrance. Molecular dynamics simulations, combined with cell-based protein–protein interaction studies, reveal that melanomagenic NRAS mutants form intramolecular contacts that enhance BRAF binding affinity, BRAF-CRAF heterodimer formation, and MAPK > ERK signaling. Along with the allelic series of conditional mouse models we describe, these results establish a mechanistic basis for the enrichment of specific NRAS mutants in human melanoma.

Funder

Damon Runyon Cancer Research Foundation

Foundation for the National Institutes of Health

American Cancer Society

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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