The anti-inflammatory efficacy of melanocortin drugs is influenced by genetic variation at MC1R

N Natalya Khodeneva C Camilla S. A. Davan-Wetton T Thomas E. N. Jonassen M Mauro Perretti (William Harvey Research Institute, Faculty of Medicine and Dentistry, Queen Mary University of London) T Trinidad Montero-Melendez

Abstract

Abstract The melanocortin 1 receptor ( MC1R ) is a pro-resolving anti-inflammatory target under clinical development for scleroderma, arthritis, light intolerance or melanoma prevention. Genetic diversity at MC1R is high in certain populations, with some variants associated with loss-of function (LoF) resulting in red hair and poor tanning response. However, how these variants influence the anti-inflammatory efficacy of drug candidates targeting MC1R is unknown. We analysed the impact of 30 variants on receptor signalling (cAMP and phospho-ERK) and the anti-inflammatory response to nine agonists on the whole-blood assay on healthy volunteers. LoF presents as a continuum rather than as a binary characteristic (benign/pathogenic) and differentially affects each signalling pathway, undermining the usefulness of in silico tools to predict variants pathogenicity. Moreover, variants affected compounds differently, even causing LoF, no effect or gain-of-function depending on the compound tested. We identified responders and non-responders to melanocortin compounds, and the efficacy of most compounds (determined as reduction of cytokine release) was diminished by the presence of variants at MC1R . Carrying red-hair variants (RHC) also associated with reduced efficacy but not having light skin phototype. These data encourage the incorporation of pharmacogenetics strategies during melanocortin drug development programs to ensure targeted interventions for maximal efficacy and safety.

Article Details

Volume / Issue Vol. 1, Issue 1
Published June 11, 2026
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (5)

N

Natalya Khodeneva

C

Camilla S. A. Davan-Wetton

T

Thomas E. N. Jonassen

M

Mauro Perretti

William Harvey Research Institute, Faculty of Medicine and Dentistry, Queen Mary University of London

T

Trinidad Montero-Melendez