Influence of the C-terminal substituent on the crystal-state conformation of Adm peptides
Academic Article
Publication Date:
2020
abstract:
The bis-functionalized diamondoid alpha-amino acid 2-aminoadamantane-2-carboxylic acid (Adm) has been used as the building block of four N-alpha-formyl homo-dipeptide alkylamide sequences via a solution-phase Ugi multicomponent reaction approach. The conformers of these peptides have been determined in the crystalline state by X-ray diffraction to distinguish the influences of the C-terminal substituent. One of the Adm peptides folds into an open and a hydrogen-bonded gamma-turn geometry. Moreover, 3D-structures have been observed featuring two consecutive gamma-turns in an incipient gamma-helical structure, a significantly distorted nonhelical beta-turn, as well as an S-shaped conformation with opposite helical screw senses. A significant topological variety is thus exhibited by the -Adm-Adm- sequences contingent on their C-terminal substituents, illustrating both the broad conformational potential and the need for further characterization of this sterically bulky residue in explorations of its phi, psi space.
Iris type:
01.01 Articolo in rivista
Keywords:
2-aminoadamantane-2-carboxylic acid peptides; crystal-state conformation; beta-turn; gamma-helix; gamma-turn
List of contributors:
Toniolo, Claudio; Crisma, Marco
Published in: