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

Academic Article
Publication Date:
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.
Iris type:
01.01 Articolo in rivista
List of contributors:
Crisma, Marco
Handle:
https://iris.cnr.it/handle/20.500.14243/218598
Published in:
BIOPOLYMERS (PRINT)
Journal
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