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Melanotan-I

Afamelanotide, MT-I, [Nle4-D-Phe7]-α-MSH, Scenesse, CUV-1647

Quick Stats
Studies 225
Trials 100
Score 3
2021 pubmed

Structures of active melanocortin-4 receptor-Gs-protein complexes with NDP-α-MSH and setmelanotide.

Heyder. Nicolas A NA; Kleinau. Gunnar G; Speck. David D; Schmidt. Andrea A; Paisdzior. Sarah S; Szczepek. Michal M; Bauer. Brian B; Koch. Anja A; Gallandi. Monique M; Kwiatkowski. Dennis D; Bürger. Jörg J; Mielke. Thorsten T; Beck-Sickinger. Annette G AG; Hildebrand. Peter W PW; Spahn. Christian M T CMT; Hilger. Daniel D; Schacherl. Magdalena M; Biebermann. Heike H; Hilal. Tarek T; Kühnen. Peter P; Kobilka. Brian K BK; Scheerer. Patrick P

Key Findings

  • Cryo‑EM structures reveal the precise binding pose of NDP‑α‑MSH on MC4R and the resulting activation of the receptor via TM6 movement
  • A calcium ion is required as a co‑factor that adapts to the ligand and stabilizes the active complex
  • Setmelanotide, a cyclic peptide, shows biased signaling toward Gq/11, highlighting pathway‑specific effects of different MC4R agonists

Practical Outcomes

  • Knowing the exact activation mechanism confirms that melanotan‑I works by stimulating MC4R to reduce appetite. The role of calcium suggests that mineral balance could influence peptide effectiveness. While the study doesn’t change dosing, it helps biohackers understand why some MC4R‑targeting peptides may feel different and guides future development of more selective anti‑obesity compounds.

Summary

Scientists mapped exactly how the weight‑loss peptide melanotan‑I (NDP‑α‑MSH) and a similar drug bind to the brain’s MC4R receptor, showing the detailed steps that turn the receptor on and how calcium helps the binding. This explains why these peptides can suppress appetite, but it doesn’t give new dosing tips for users.

Abstract

The melanocortin-4 receptor (MC4R), a hypothalamic master regulator of energy homeostasis and appetite, is a class A G-protein-coupled receptor and a prime target for the pharmacological treatment of obesity. Here, we present cryo-electron microscopy structures of MC4R-Gs-protein complexes with two drugs recently approved by the FDA, the peptide agonists NDP-α-MSH and setmelanotide, with 2.9 Å and 2.6 Å resolution. Together with signaling data from structure-derived MC4R mutants, the complex structures reveal the agonist-induced origin of transmembrane helix (TM) 6-regulated receptor activation. The ligand-binding modes of NDP-α-MSH, a high-affinity linear variant of the endogenous agonist α-MSH, and setmelanotide, a cyclic anti-obesity drug with biased signaling toward Gq/11, underline the key role of TM3 in ligand-specific interactions and of calcium ion as a ligand-adaptable cofactor. The agonist-specific TM3 interplay subsequently impacts receptor-Gs-protein interfaces at intracellular loop 2, which also regulates the G-protein coupling profile of this promiscuous receptor. Finally, our structures reveal mechanistic details of MC4R activation/inhibition, and provide important insights into the regulation of the receptor signaling profile which will facilitate the development of tailored anti-obesity drugs.

Study Information

Provider

pubmed

Year

2021

Date

2021-09-24T00:00:00.000Z

DOI

10.1038/s41422-021-00569-8