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Melanotan-I

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

Quick Stats
Studies 225
Trials 100
Score 1
2005 pubmed 10 citations

Acid-base titration of melanocortin peptides: evidence of Trp rotational conformers interconversion.

Fernandez. Roberto M RM; Vieira. Renata F F RF; Nakaie. Clóvis R CR; Lamy. M Teresa MT; Ito. Amando S AS

Key Findings

  • Acid‑base changes cause tryptophan residues in the peptides to switch between different rotamer shapes.
  • Alpha‑MSH and NDP‑MSH differ in how much their shapes shift with pH, indicating structural differences.
  • Labeling the peptides with a paramagnetic probe (Toac) doesn’t significantly alter their overall structure, and ESR can also track pH‑dependent changes.

Practical Outcomes

  • For DIY users, the work shows that peptide shape and possibly stability can vary with pH, so formulation pH matters. However, it doesn’t give dosing guidance or direct performance benefits, so it’s mainly of academic interest.

Summary

The study looked at how two melanin‑stimulating peptides (alpha‑MSH and a stronger version called NDP‑MSH) change their shape when the acidity of the solution changes, using special fluorescence tricks. It’s mostly about the chemistry of the peptides, not about how to use them in the body.

Abstract

Tryptophantime-resolved fluorescence was used to monitor acid-base titration properties of alpha-melanocyte stimulating hormone (alpha-MSH) and the biologically more potent analog [Nle4, D-Phe7]alpha -MSH (NDP-MSH), labeled or not with the paramagnetic amino acid probe 2,2,6,6-tetramthylpiperidine-N-oxyl-4-amino-4-carboxylic acid (Toac). Global analysis of fluorescence decay profiles measured in the pH range between 2.0 and 11.0 showed that, for each peptide, the data could be well fitted to three lifetimes whose values remained constant. The less populated short lifetime component changed little with pH and was ascribed to Trp g+ chi1 rotamer, in which electron transfer deactivation predominates over fluorescence. The long and intermediate lifetime preexponential factors interconverted along that pH interval and the result was interpreted as due to interconversion between Trp g- and trans chi1 rotamers, driven by conformational changes promoted by modifications in the ionization state of side-chain residues. The differences in the extent of interconversion in alpha-MSH and NDP-MSH are indicative of structural differences between the peptides, while titration curves suggest structural similarities between each peptide and its Toac-labeled species, in aqueous solution. Though less sensitive than fluorescence, the Toac electron spin resonance (ESR) isotropic hyperfine splitting parameter can also monitor the titration of side-chain residues located relatively far from the probe.

Study Information

Provider

pubmed

Year

2005

DOI

10.1002/bip.20210

Citations

10

References

43