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Applications of biaryl cyclization in the synthesis of cyclic enkephalin analogs with a highly restricted flexibility.


ABSTRACT: A series of 10 cyclic, biaryl analogs of enkephalin, with Tyr or Phe residues at positions 1 and 4, were synthesized according to the Miyaura borylation and Suzuki coupling methodology. Biaryl bridges formed by side chains of the two aromatic amino acid residues are of the meta-meta, meta-para, para-meta, and para-para configuration. Conformational properties of the peptides were studied by CD and NMR. CD studies allowed only to compare conformations of individual peptides while NMR investigations followed by XPLOR calculations provided detailed information on their conformation. Reliability of the XPLOR calculations was confirmed by quantum chemical ones performed for one of the analogs. No intramolecular hydrogen bonds were found in all the peptides. They are folded and adopt the type IV β-turn conformation. Due to a large steric strain, the aromatic carbon atoms forming the biaryl bond are distinctly pyramidalized. Seven of the peptides were tested in vitro for their affinity for the µ-opioid receptor.

SUBMITTER: Rozanowska M 

PROVIDER: S-EPMC10907494 | biostudies-literature | 2024 Mar

REPOSITORIES: biostudies-literature

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Applications of biaryl cyclization in the synthesis of cyclic enkephalin analogs with a highly restricted flexibility.

Różanowska Maria M   Szczupaj Gabriela G   Nowakowski Michał M   Rajagopal Priyadharshni P   Lipiński Piotr F J PFJ   Matalińska Joanna J   Misicka Aleksandra A   Lisowski Marek M   Jaremko Łukasz Ł   Jaremko Mariusz M  

Amino acids 20240301 1


A series of 10 cyclic, biaryl analogs of enkephalin, with Tyr or Phe residues at positions 1 and 4, were synthesized according to the Miyaura borylation and Suzuki coupling methodology. Biaryl bridges formed by side chains of the two aromatic amino acid residues are of the meta-meta, meta-para, para-meta, and para-para configuration. Conformational properties of the peptides were studied by CD and NMR. CD studies allowed only to compare conformations of individual peptides while NMR investigatio  ...[more]

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