Choline-Sigma-1R as an Additional Mechanism for Potentiation of Orexin by Cocaine

Int J Mol Sci. 2021 May 13;22(10):5160. doi: 10.3390/ijms22105160.

Abstract

Orexin A, an endogenous peptide involved in several functions including reward, acts via activation of orexin receptors OX1 and OX2, Gq-coupled GPCRs. We examined the effect of a selective OX1 agonist, OXA (17-33) on cytosolic calcium concentration, [Ca2+]i, in neurons of nucleus accumbens, an important area in the reward circuit. OXA (17-33) increased [Ca2+]i in a dose-dependent manner; the effect was prevented by SB-334867, a selective OX1 receptors antagonist. In Ca2+-free saline, the OXA (17-33)-induced increase in [Ca2+]i was not affected by pretreatment with bafilomycin A1, an endo-lysosomal calcium disrupter, but was blocked by 2-APB and xestospongin C, antagonists of inositol-1,4,5-trisphosphate (IP3) receptors. Pretreatment with VU0155056, PLD inhibitor, or BD-1047 and NE-100, Sigma-1R antagonists, reduced the [Ca2+]i response elicited by OXA (17-33). Cocaine potentiated the increase in [Ca2+]i by OXA (17-33); the potentiation was abolished by Sigma-1R antagonists. Our results support an additional signaling mechanism for orexin A-OX1 via choline-Sigma-1R and a critical role for Sigma-1R in the cocaine-orexin A interaction in nucleus accumbens neurons.

Keywords: OX1 receptor; PLD; choline; orexin A; phospholipase D; reward.

MeSH terms

  • Animals
  • Animals, Newborn
  • Choline / metabolism*
  • Cocaine / pharmacology*
  • Gene Expression Regulation
  • Neurons / drug effects
  • Neurons / physiology*
  • Nucleus Accumbens / drug effects
  • Nucleus Accumbens / physiology*
  • Orexin Receptors / genetics
  • Orexin Receptors / metabolism*
  • Orexins / genetics
  • Orexins / metabolism*
  • Rats
  • Rats, Sprague-Dawley
  • Receptors, sigma / genetics
  • Receptors, sigma / metabolism*
  • Sigma-1 Receptor
  • Vasoconstrictor Agents / pharmacology

Substances

  • Orexin Receptors
  • Orexins
  • Receptors, sigma
  • Vasoconstrictor Agents
  • Cocaine
  • Choline