| Literature DB >> 29853330 |
Tom Willemse1, Emilie Eiselt2, Karlijn Hollanders1, Wim Schepens3, Herman W T van Vlijmen3, Nga N Chung4, Véronique Blais2, Brain Holleran2, Jean-Michel Longpré2, Peter W Schiller4, Bert U W Maes5, Philippe Sarret6, Louis Gendron7, Steven Ballet8.
Abstract
In this study, affinities and activities of derivatized analogues of Dmt-dermorphin[1-4] (i.e. Dmt-d-Ala-Phe-GlyNH2, Dmt = 2',6'-dimethyl-(S)-tyrosine) for the µ opioid receptor (MOP) and δ opioid receptor (DOP) were evaluated using radioligand binding studies, functional cell-based assays and isolated organ bath experiments. By means of solid-phase or solution-phase Suzuki-Miyaura cross-couplings, various substituted regioisomers of the phenylalanine moiety in position 3 of the sequence were prepared. An 18-membered library of opioid tetrapeptides was generated via screening of the chemical space around the Phe3 side chain. These substitutions modulated bioactivity, receptor subtype selectivity and highly effective ligands with subnanomolar binding affinities, contributed to higher functional activities and potent analgesic actions. In search of selective peptidic ligands, we show here that the Suzuki-Miyaura reaction is a versatile and robust tool which could also be deployed elsewhere.Entities:
Keywords: GPCR ligands; Non-natural amino acids; Opioid peptides; Receptor selectivity; Suzuki-Miyaura cross coupling
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Year: 2018 PMID: 29853330 PMCID: PMC6005765 DOI: 10.1016/j.bmcl.2018.05.015
Source DB: PubMed Journal: Bioorg Med Chem Lett ISSN: 0960-894X Impact factor: 2.823