Herein we report the preparation of C4-functionalized proline-derived azabicycloalkane (Aba) amino acids by exploiting a direct ring closing enyne metathesis reaction of readily accessible dipeptide precursors. The reverse-turn inducing properties of the newly synthesized constrained dipeptide mimics were assessed by computational studies. Furthermore, the desired Aba derivatives, carrying a synthetically versatile diene moiety, were subjected to post-functionalization reactions to validate their potential application in peptide/peptidomimetic chemistry and drug discovery.Constrained C4-functionalized dipeptide derivatives incorporating a proline moiety were prepared in high yields by exploiting a direct ring closing enyne metathesis (RCEYM) reaction. Post-functionalization studies of the newly introduced diene system pave the way for future applications in peptide synthesis, medicinal chemistry and nanotechnology. image

A Concise Ring Closing Enyne Metathesis Approach for the Preparation of Functionalized Proline‐Derived Azabicycloalkane Amino Acids

Rubes, Davide
Membro del Collaboration Group
;
Zupi, Marco
Membro del Collaboration Group
;
Bisbano, Giovanni
Membro del Collaboration Group
;
Terreni, Marco
Membro del Collaboration Group
;
De Lorenzi, Ersilia
Membro del Collaboration Group
;
Serra, Massimo
Membro del Collaboration Group
2024-01-01

Abstract

Herein we report the preparation of C4-functionalized proline-derived azabicycloalkane (Aba) amino acids by exploiting a direct ring closing enyne metathesis reaction of readily accessible dipeptide precursors. The reverse-turn inducing properties of the newly synthesized constrained dipeptide mimics were assessed by computational studies. Furthermore, the desired Aba derivatives, carrying a synthetically versatile diene moiety, were subjected to post-functionalization reactions to validate their potential application in peptide/peptidomimetic chemistry and drug discovery.Constrained C4-functionalized dipeptide derivatives incorporating a proline moiety were prepared in high yields by exploiting a direct ring closing enyne metathesis (RCEYM) reaction. Post-functionalization studies of the newly introduced diene system pave the way for future applications in peptide synthesis, medicinal chemistry and nanotechnology. image
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1510673
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