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Crystal-state conformation of C?,?-dialkylated peptides containing chiral ?-homo-residues
- Source :
- Journal of Peptide Science. 7:15-26
- Publication Year :
- 2001
- Publisher :
- Wiley, 2001.
-
Abstract
- Secondary structure formation and stability are essential features in the knowledge of complex folding topology of biomolecules. To better understand the relationships between preferred conformations and functional properties of beta-homo-amino acids, the synthesis and conformational characterization by X-ray diffraction analysis of peptides containing conformationally constrained Calpha,alpha-dialkylated amino acid residues, such as alpha-aminoisobutyric acid or 1-aminocyclohexane-1-carboxylic acid and a single beta-homoamino acid, differently displaced along the peptide sequence have been carried out. The peptides investigated are: Boc-betaHLeu-(Ac6c)2-OMe, Boc-Ac6c-betaHLeu-(Ac6c)2-OMe and Boc-betaHVal-(Aib)5-OtBu, together with the C-protected beta-homo-residue HCl.H-betaHVal-OMe. The results indicate that the insertion of a betaH-residue at position 1 or 2 of peptides containing strong helix-inducing, bulky Calpha,alpha-disubstituted amino acid residues does not induce any specific conformational preferences. In the crystal state, most of the NH groups of beta-homo residues of tri- and tetrapeptides are not involved in intramolecular hydrogen bonds, thus failing to achieve helical structures similar to those of peptides exclusively constituted of Calpha,alpha-disubstituted amino acid residues. However, by repeating the structural motifs observed in the molecules investigated, a beta-pleated sheet secondary structure, and a new helical structure, named (14/15)-helix, were generated, corresponding to calculated minimum-energy conformations. Our findings, as well as literature data, strongly indicate that conformations of betaH-residues, with the micro torsion angle equal to -60 degrees, are very unlikely.
- Subjects :
- β-pleated sheet
Pharmacology
Chemistry
Stereochemistry
Hydrogen bond
Organic Chemistry
Peptide synthesi
β-homo amino acid
General Medicine
Dihedral angle
Biochemistry
Folding (chemistry)
chemistry.chemical_compound
Structural Biology
Intramolecular force
Drug Discovery
α,α-dialkylated amino acid
Peptide synthesis
Molecular Medicine
X-ray structure
Structural motif
Molecular Biology
Peptide sequence
Protein secondary structure
Subjects
Details
- ISSN :
- 10991387 and 10752617
- Volume :
- 7
- Database :
- OpenAIRE
- Journal :
- Journal of Peptide Science
- Accession number :
- edsair.doi.dedup.....23835de6b119056da80fa2f385a5d193
- Full Text :
- https://doi.org/10.1002/psc.278