| Literature DB >> 34343741 |
Alice Della Valle1, Azzurra Stefanucci2, Giuseppe Scioli1, Edina Szűcs3, Sándor Benyhe3, Stefano Pieretti4, Paola Minosi4, Chiara Sturaro5, Girolamo Calò6, Gokhan Zengin7, Adriano Mollica1.
Abstract
The use of α-amino-γ lactam of Freidinger (Agl) may serve as an impressive method to increase the biological stability of peptides and an appropriate tool to elucidate their structure-activity relationships. The endomorphin-2 (EM-2) and [D-Ala2, des-Leu5] enkephalin amide (DAPEA) are two linear opioid tetrapeptides agonists of MOR and MOR/DOR respectively. Herein, we investigated the influence of the incorporation of (R/S)-Agl in position 2 and 3 on the biological profile of the aforementioned products in vitro and in vivo. Receptor radiolabeled displacement and functional assays were used to measure in vitro the binding affinity and receptors activation of the novel analogues. The mouse tail flick and formalin tests allowed to observe their antinociceptive effect in vivo. Data revealed that peptide A2D was able to selectively bind and activate MOR with a potent antinociceptive effect after intracerebroventricular (i.c.v.) administration, performing better than the parent compounds EM-2 and DAPEA. Molecular docking calculations helped us to understand the key role exerted by the Freidinger Agl moiety in A2D for the interaction with the MOR binding pocket.Entities:
Keywords: Binding affinity; Freidinger γ-lactam; GTP stimulation; Nociception; Opioids
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Year: 2021 PMID: 34343741 DOI: 10.1016/j.bioorg.2021.105219
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.275