1. Academic Validation
  2. CLIPSing Melanotan-II to Discover Multiple Functionally Selective hMCR Agonists

CLIPSing Melanotan-II to Discover Multiple Functionally Selective hMCR Agonists

  • J Med Chem. 2022 Mar 10;65(5):4007-4017. doi: 10.1021/acs.jmedchem.1c01848.
Stefano Tomassi 1 Marilisa Pia Dimmito 2 Minying Cai 3 Antonia D'Aniello 4 Alessandra Del Bene 4 Anna Messere 4 Zekun Liu 3 Tingyi Zhu 3 Victor J Hruby 3 Azzurra Stefanucci 2 Sandro Cosconati 4 Adriano Mollica 2 Salvatore Di Maro 4
Affiliations

Affiliations

  • 1 Dipartimento di Farmacia, Università degli Studi di Napoli "Federico II", Via D. Montesano 49, Naples 80131, Italy.
  • 2 Dipartimento di Farmacia, Università di Chieti-Pescara "G. d'Annunzio", Via dei Vestini 31, Chieti 66100, Italy.
  • 3 Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, United States.
  • 4 DiSTABiF, University of Campania "Luigi Vanvitelli", Via Vivaldi 43, 81100 Caserta, Italy.
Abstract

The pleiotropic role played by melanocortin receptors (MCRs) in both physiological and pathological processes has stimulated medicinal chemists to develop synthetic agonists/antagonists with improved potency and selectivity. Here, by deploying the Chemical Linkage of Peptide onto Scaffolds strategy, we replaced the lactam cyclization of melanotan II (MT-II), a potent and unselective agonist of human MCRs (hMCRs), with different xylene-derived thioethers. The newly designed peptides displayed binding affinities toward MCRs ranging from the low nanomolar to the sub-micromolar range, highlighting a correlation between the explored linkers and the affinity toward hMCRs. In contrast to the parent peptide (MT-II), compound 5 displayed a remarkable functional selectivity toward the hMC1R. Enhanced sampling molecular dynamics simulations were found to be instrumental in outlining how the employed cyclization strategy affects the peptides' conformational behavior and, as a consequence, the detected hMC1R affinity. Additionally, a model of the peptide 5/hMC1R complex employing the very recently reported cryogenic electron microscopy receptor structure was provided.

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