The Institute of Academic Anaesthesia, University of Dundee, Dundee, DD1 9SY, UK.
Division of Neuroscience, School of Medicine, Ninewells Hospital, University of Dundee, Dundee, DD1 9SY, UK.
Sci Rep. 2017 Aug 30;7(1):9969. doi: 10.1038/s41598-017-10360-8.
The tyrosine kinase, c-Src, participates in mu opioid receptor (MOP) mediated inhibition in sensory neurons in which β-arrestin2 (β-arr2) is implicated in its recruitment. Mice lacking β-arr2 exhibit increased sensitivity to morphine reinforcement; however, whether β-arr2 and/or c-Src participate in the actions of opioids in neurons within the reward pathway is unknown. It is also unclear whether morphine acts exclusively through MOPs, or involves delta opioid receptors (DOPs). We examined the involvement of MOPs, DOPs, β-arr2 and c-Src in the inhibition by morphine of GABAergic inhibitory postsynaptic currents (IPSCs) recorded from neurons in the mouse ventral tegmental area. Morphine inhibited spontaneous IPSC frequency, mainly through MOPs, with only a negligible effect remaining in MOP-/- neurons. However, a reduction in the inhibition by morphine for DOP-/- c.f. WT neurons and a DPDPE-induced decrease of IPSC frequency revealed a role for DOPs. The application of the c-Src inhibitor, PP2, to WT neurons also reduced inhibition by morphine, while the inactive PP3, and the MEK inhibitor, SL327, had no effect. Inhibition of IPSC frequency by morphine was also reduced in β-arr2-/- neurons in which PP2 caused no further reduction. These data suggest that inhibition of IPSCs by morphine involves a β-arr2/c-Src mediated mechanism.
酪氨酸激酶 c-Src 参与了感觉神经元中 μ 阿片受体(MOP)介导的抑制作用,β-arrestin2(β-arr2)参与了其募集。缺乏β-arr2 的小鼠对吗啡强化作用的敏感性增加;然而,β-arr2 和/或 c-Src 是否参与了神经元内的阿片类药物在奖励途径中的作用尚不清楚。吗啡是否仅通过 MOP 起作用,还是涉及 δ 阿片受体(DOPs),也不清楚。我们研究了 MOP、DOP、β-arr2 和 c-Src 在吗啡抑制小鼠腹侧被盖区神经元 GABA 能抑制性突触后电流(IPSCs)中的作用。吗啡抑制自发性 IPSC 频率,主要通过 MOP,MOP-/-神经元中仅有可忽略的作用残留。然而,DOP-/-c.f.WT 神经元中吗啡抑制作用的减少,以及 DPDPE 诱导的 IPSC 频率降低,揭示了 DOP 的作用。将 c-Src 抑制剂 PP2 应用于 WT 神经元也减少了吗啡的抑制作用,而无活性的 PP3 和 MEK 抑制剂 SL327 则没有作用。吗啡抑制 IPSC 频率在β-arr2-/-神经元中也减少,而 PP2 则没有进一步减少。这些数据表明,吗啡对 IPSC 的抑制作用涉及β-arr2/c-Src 介导的机制。