Mapping the N/OFQ(1−13)-NH2 Address Domain to Identify G Protein-Biased NOP Receptor Agonists

Abstract The nociceptin/orphanin FQ peptide receptor (NOP) couples to G proteins and β-arrestins, but how the peptide address domain influences transducer preference remains unclear. We synthesized ninety N/OFQ(1−13)-NH2 analogues with acylated lysine-based or related non-natural residues at positions 5−13 and evaluated NOP−G protein and NOP−β-arrestin 2 interactions in BRET assays. Substitutions at positions 5−7 most affected signaling. Position 7 was the main hotspot for G protein bias, while bulky benzoyl- and cyclohexanoyl-lysine substitutions at position 5 also produced significant bias. Position 8 was poorly tolerant to modification, whereas positions 9−13 generally retained agonist activity and balanced signaling. No reproducible β-arrestin 2-biased profile was identified. Molecular dynamics and allosteric network analyses of [Lys(CyCO)5]N/OFQ(1−13)-NH2 suggested that engagement of a hydrophobic pocket at the TM3−TM5/ECL2 interface may contribute to its profile. These findings provide a position-dependent map for designing NOP peptide agonists with altered transducer preference.

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Publication Details

Journal
Journal of Medicinal Chemistry
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.jmedchem.6c02528
Primary Topic
Neuropeptides and Animal Physiology
Type
article
Field-Weighted Citation Impact
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article

Mapping the N/OFQ(1−13)-NH2 Address Domain to Identify G Protein-Biased NOP Receptor Agonists

Salvatore Pacifico, Davide Illuminati, Erika Marzola, Girolamo Calò et al.
Journal of Medicinal Chemistry
Neuropeptides and Animal Physiology
article

Mapping the N/OFQ(1−13)-NH2 Address Domain to Identify G Protein-Biased NOP Receptor Agonists

Salvatore Pacifico, Davide Illuminati, Erika Marzola, Girolamo Calò, Delia Preti, Valentina Albanese, Erika Morrone, Giulio Meneguzzo, Remo Guerrini, Antonella Ciancetta, Davide Malfacini, Tiziano De Ventura, Alessandra Rizzo, Daniele Scarpa
article en

Abstract

Abstract The nociceptin/orphanin FQ peptide receptor (NOP) couples to G proteins and β-arrestins, but how the peptide address domain influences transducer preference remains unclear. We synthesized ninety N/OFQ(1−13)-NH2 analogues with acylated lysine-based or related non-natural residues at positions 5−13 and evaluated NOP−G protein and NOP−β-arrestin 2 interactions in BRET assays. Substitutions at positions 5−7 most affected signaling. Position 7 was the main hotspot for G protein bias, while bulky benzoyl- and cyclohexanoyl-lysine substitutions at position 5 also produced significant bias. Position 8 was poorly tolerant to modification, whereas positions 9−13 generally retained agonist activity and balanced signaling. No reproducible β-arrestin 2-biased profile was identified. Molecular dynamics and allosteric network analyses of [Lys(CyCO)5]N/OFQ(1−13)-NH2 suggested that engagement of a hydrophobic pocket at the TM3−TM5/ECL2 interface may contribute to its profile. These findings provide a position-dependent map for designing NOP peptide agonists with altered transducer preference.

Journal of Medicinal Chemistry
University of Padua (IT), University of Ferrara (IT), Center for Translational Neurophysiology of Speech and Communication (IT)
Openalex Percentile: Top 17%
Neuropeptides and Animal Physiology
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