Literature DB >> 26490245

Voltage-Gated R-Type Calcium Channel Inhibition via Human μ-, δ-, and κ-opioid Receptors Is Voltage-Independently Mediated by Gβγ Protein Subunits.

Géza Berecki1, Leonid Motin2, David J Adams2.   

Abstract

Elucidating the mechanisms that modulate calcium channels via opioid receptor activation is fundamental to our understanding of both pain perception and how opioids modulate pain. Neuronal voltage-gated N-type calcium channels (Cav2.2) are inhibited by activation of G protein-coupled opioid receptors (ORs). However, inhibition of R-type (Cav2.3) channels by μ- or κ-ORs is poorly defined and has not been reported for δ-ORs. To investigate such interactions, we coexpressed human μ-, δ-, or κ-ORs with human Cav2.3 or Cav2.2 in human embryonic kidney 293 cells and measured depolarization-activated Ba(2+) currents (IBa). Selective agonists of μ-, δ-, and κ-ORs inhibited IBa through Cav2.3 channels by 35%. Cav2.2 channels were inhibited to a similar extent by κ-ORs, but more potently (60%) via μ- and δ-ORs. Antagonists of δ- and κ-ORs potentiated IBa amplitude mediated by Cav2.3 and Cav2.2 channels. Consistent with G protein βγ (Gβγ) interaction, modulation of Cav2.2 was primarily voltage-dependent and transiently relieved by depolarizing prepulses. In contrast, Cav2.3 modulation was voltage-independent and unaffected by depolarizing prepulses. However, Cav2.3 inhibition was sensitive to pertussis toxin and to intracellular application of guanosine 5'-[β-thio]diphosphate trilithium salt and guanosine 5'-[γ-thio]triphosphate tetralithium salt. Coexpression of Gβγ-specific scavengers-namely, the carboxyl terminus of the G protein-coupled receptor kinase 2 or membrane-targeted myristoylated-phosducin-attenuated or abolished Cav2.3 modulation. Our study reveals the diversity of OR-mediated signaling at Cav2 channels and identifies neuronal Cav2.3 channels as potential targets for opioid analgesics. Their novel modulation is dependent on pre-existing OR activity and mediated by membrane-delimited Gβγ subunits in a voltage-independent manner.
Copyright © 2015 by The American Society for Pharmacology and Experimental Therapeutics.

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Year:  2015        PMID: 26490245     DOI: 10.1124/mol.115.101154

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  8 in total

1.  Delta-opioid receptor-mediated modulation of excitability of individual hippocampal neurons: mechanisms involved.

Authors:  Lucia Moravcikova; Roman Moravcik; Daniela Jezova; Lubica Lacinova; Eliyahu Dremencov
Journal:  Pharmacol Rep       Date:  2020-11-08       Impact factor: 3.024

Review 2.  GPCR regulation of secretion.

Authors:  Yun Young Yim; Zack Zurawski; Heidi Hamm
Journal:  Pharmacol Ther       Date:  2018-07-26       Impact factor: 12.310

3.  Further Evidence that Inhibition of Neuronal Voltage-Gated Calcium Channels Contributes to the Hypnotic Effect of Neurosteroid Analogue, 3β-OH.

Authors:  Tamara Timic Stamenic; Francesca M Manzella; Stefan Maksimovic; Kathiresan Krishnan; Douglas F Covey; Vesna Jevtovic-Todorovic; Slobodan M Todorovic
Journal:  Front Pharmacol       Date:  2022-05-23       Impact factor: 5.988

4.  Conotoxin contulakin-G engages a neurotensin receptor 2/R-type calcium channel (Cav2.3) pathway to mediate spinal antinociception.

Authors:  Laurent Martin; Mohab Ibrahim; Kimberly Gomez; Jie Yu; Song Cai; Lindsey A Chew; Shreya S Bellampalli; Aubin Moutal; Tally Largent-Milnes; Frank Porreca; Rajesh Khanna; Baldomero M Olivera; Amol Patwardhan
Journal:  Pain       Date:  2021-12-15       Impact factor: 7.926

5.  Differential regulation of Cav2.2 channel exon 37 variants by alternatively spliced μ-opioid receptors.

Authors:  Maria A Gandini; Ivana A Souza; Dvij Raval; Jin Xu; Ying-Xian Pan; Gerald W Zamponi
Journal:  Mol Brain       Date:  2019-11-27       Impact factor: 4.041

6.  The Peptide PnPP-19, a Spider Toxin Derivative, Activates μ-Opioid Receptors and Modulates Calcium Channels.

Authors:  Ana C N Freitas; Steve Peigneur; Flávio H P Macedo; José E Menezes-Filho; Paul Millns; Liciane F Medeiros; Maria A Arruda; Jader Cruz; Nicholas D Holliday; Jan Tytgat; Gareth Hathway; Maria E de Lima
Journal:  Toxins (Basel)       Date:  2018-01-15       Impact factor: 4.546

Review 7.  In vitro and in vivo phosphorylation of the Cav2.3 voltage-gated R-type calcium channel.

Authors:  T Schneider; S Alpdogan; J Hescheler; F Neumaier
Journal:  Channels (Austin)       Date:  2018       Impact factor: 2.581

Review 8.  Opioid Receptor Regulation of Neuronal Voltage-Gated Calcium Channels.

Authors:  Norbert Weiss; Gerald W Zamponi
Journal:  Cell Mol Neurobiol       Date:  2020-06-08       Impact factor: 5.046

  8 in total

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