Solution Structure and Acid-Base Properties of Reduced α-Conotoxin MI

Faragó, Zoltán [Faragó, Zoltán (gyógyszerészi kémia), author] Department of Pharmaceutical Chemistry (SU / FP); Mirzahosseini, Arash [Mirzahosseini, Arash (gyógyszerészi kémia), author] Department of Pharmaceutical Chemistry (SU / FP); Horváth, Dániel [Horváth, Dániel (Gyógyszerészet, K...), author] ELKH-ELTE Protein Modelling Research Group (ELTE / ELU FoS / IC); Pálla, Tamás [Pálla, Tamás (gyógyszerészi kémia), author] Department of Pharmaceutical Chemistry (SU / FP); Horváth, Péter [Horváth, Péter (cirkuláris dikroi...), author] Department of Pharmaceutical Chemistry (SU / FP); Perczel, András [Perczel, András (Peptidek és fehér...), author] Protein Modelling Group HAS-ELU (ELTE / ELU FoS / IC); Structural Chemistry and Biology Laboratory (Sz... (ELTE / ELU FoS / IC); Noszál, Béla ✉ [Noszál, Béla (analitikai kémia), author] Department of Pharmaceutical Chemistry (SU / FP)

English Article (Journal Article) Scientific
Published: CHEMISTRY & BIODIVERSITY 1612-1872 1612-1880 18 (10) Paper: e2100464 , 9 p. 2021
  • SJR Scopus - Chemistry (miscellaneous): Q2
Identifiers
Fundings:
  • (Felsőoktatási Intézményi Kiválósági Program (FIKP) 2020)
  • (UNKP-20-4-I-SE-2)
  • (UNKP-20-4-II-SE-3)
The reduced derivative of α-conotoxin MI, a 14 amino acid peptide is characterized by NMR-pH titrations and molecular dynamics simulations to determine the protonation constants of the nine basic moieties, including four cysteine thiolates, and the charge-dependent structural properties. The peptide conformation at various protonation states was determined. The results show that the disulfide motifs in the native globular α-conotoxin MI occur between those cysteine moieties that exhibit the most similar thiolate basicities. Since the basicity of thiolates correlates to its redox potential, this phenomenon can be explained by the higher reactivity of the two thiolates with higher basicities. The folding of the oxidized peptide is further facilitated by the loop-like structure of the reduced form, which brings the thiolate groups into sufficient proximity. The 9 group-specific protonation constants and the related, charge-dependent, species-specific peptide structures are presented.
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2025-04-23 14:15