Two complete series of N-protected, monodispersed oligopeptide esters to the pentamer level from 1-aminocyclododecane-1-carboxylic acid (Ac(12)c), an alpha-amino acid conformationally constrained through C-i(alpha) <-> C-i(alpha) cyclization, and either L-Ala or Aib residues, along with the N-protected Ac(12)c homopeptide alkylamide series from monomer to trimer, have been synthesized by solution methods and fully characterized The solution-preferred conformations of these peptides have been assessed by Fourier transform ir absorption and H-1-nmr techniques. Moreover, the molecular structures of one derivative (Z-Ac(12)c-OH) and three peptides [the tripeptide ester Z-L-Ala-Ac(12)c-L-Ala-OMe, the tripeptide alkylamide Z-(Ac(12)c)(3)-NHiPr, and the tetrapeptide ester Z-(Aib)(2)-Ac(12)c-Aib-OtBu (Aib, alpha-aminoisobutyric acid)] have been determined in the crystal state by x-ray diffraction. The results obtained point to the conclusion that beta-bends and 3(10)-helices are preferentially adopted by peptides based on Ac(12)c, the largest cycloaliphatic C-disubstituted glycine known. A comparison with the structural tendencies extracted from published works on peptides from Aib, the prototype of C-disubstituted glycines, and the other extensively studied members of the class of 1-aminocycloalkane-1-carboxylic acids (Ac(n)c, with n = 3-9), is made and the implications for the use of the Ac(12)c residue in the Ac(n)c scan approach of conformationally restricted analogues of bioactive peptides are briefly discussed.

Conformational restriction through C-alpha(i) <-> C-alpha(i) cyclization: Ac12c, the largest cycloalyphatic C-alpha,alpha-disubstituted glycine known

M Saviano;V Menchise;M Crisma;
2000

Abstract

Two complete series of N-protected, monodispersed oligopeptide esters to the pentamer level from 1-aminocyclododecane-1-carboxylic acid (Ac(12)c), an alpha-amino acid conformationally constrained through C-i(alpha) <-> C-i(alpha) cyclization, and either L-Ala or Aib residues, along with the N-protected Ac(12)c homopeptide alkylamide series from monomer to trimer, have been synthesized by solution methods and fully characterized The solution-preferred conformations of these peptides have been assessed by Fourier transform ir absorption and H-1-nmr techniques. Moreover, the molecular structures of one derivative (Z-Ac(12)c-OH) and three peptides [the tripeptide ester Z-L-Ala-Ac(12)c-L-Ala-OMe, the tripeptide alkylamide Z-(Ac(12)c)(3)-NHiPr, and the tetrapeptide ester Z-(Aib)(2)-Ac(12)c-Aib-OtBu (Aib, alpha-aminoisobutyric acid)] have been determined in the crystal state by x-ray diffraction. The results obtained point to the conclusion that beta-bends and 3(10)-helices are preferentially adopted by peptides based on Ac(12)c, the largest cycloaliphatic C-disubstituted glycine known. A comparison with the structural tendencies extracted from published works on peptides from Aib, the prototype of C-disubstituted glycines, and the other extensively studied members of the class of 1-aminocycloalkane-1-carboxylic acids (Ac(n)c, with n = 3-9), is made and the implications for the use of the Ac(12)c residue in the Ac(n)c scan approach of conformationally restricted analogues of bioactive peptides are briefly discussed.
2000
Inglese
53
200
212
Sì, ma tipo non specificato
Citazioni WOS: 12 Impact Factor 2000: 2.405 Coautore
10
info:eu-repo/semantics/article
262
Saviano, M; Iacovino, R; Menchise, V; Benedetti, E; Bonora, Gm; Gatos, M; Graci, L; Formaggio, F; Crisma, M; Toniolo, C
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/218598
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