Cell-penetrating pepducins targeting the neurotensin receptor type 1 relieve pain

神经降压素 G蛋白偶联受体 受体 慢性疼痛 伤害 细胞内 药理学 变构调节剂 变构调节 化学 医学 生物 内科学 神经科学 神经肽 生物化学
作者
Rebecca L. Brouillette,Élie Besserer‐Offroy,Christine E. Mona,Magali Chartier,Sandrine Lavenus,Marc Sousbie,Karine Belleville,Jean‐Michel Longpré,Éric Marsault,Michel Grandbois,Philippe Sarret
出处
期刊:Pharmacological Research [Elsevier]
卷期号:155: 104750-104750 被引量:16
标识
DOI:10.1016/j.phrs.2020.104750
摘要

Pepducins are cell-penetrating, membrane-tethered lipopeptides designed to target the intracellular region of a G protein-coupled receptor (GPCR) in order to allosterically modulate the receptor's signaling output. In this proof-of-concept study, we explored the pain-relief potential of a pepducin series derived from the first intracellular loop of neurotensin receptor type 1 (NTS1), a class A GPCR that mediates many of the effects of the neurotensin (NT) tridecapeptide, including hypothermia, hypotension and analgesia. We used BRET-based biosensors to determine the pepducins' ability to engage G protein signaling pathways associated with NTS1 activation. We observed partial Gq and G13 activation at a 10 {\mu}M concentration, indicating that these pepducins may act as allosteric agonists of NTS1. Additionally, we used surface plasmon resonance (SPR) as a label-free assay to monitor pepducin-induced responses in CHO-K1 cells stably expressing hNTS1. This whole-cell integrated assay enabled us to subdivide our pepducin series into three profile response groups. In order to determine the pepducins' antinociceptive potential, we then screened the series in an acute pain model (tail-flick test) by measuring tail withdrawal latencies to a thermal nociceptive stimulus, following intrathecal pepducin administration (275 nmol/kg). We further evaluated promising pepducins in a tonic pain model (formalin test), as well as in neuropathic (Chronic Constriction Injury) and inflammatory (Complete Freund's Adjuvant) chronic pain models. We report one pepducin, PP-001, that consistently reduced rat nociceptive behaviors, even in chronic pain paradigm. Altogether, these results suggest that NTS1-derived pepducins may represent a promising strategy in pain-relief.
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