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.

Influence of the C-terminal substituent on the crystal-state conformation of Adm peptides

Crisma Marco;Toniolo Claudio;
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.
2020
Istituto di Chimica Biomolecolare - ICB - Sede Pozzuoli
2-aminoadamantane-2-carboxylic acid peptides
crystal-state conformation
beta-turn
gamma-helix
gamma-turn
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/381254
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