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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >GIRK Channel Activity in Dopamine Neurons of the Ventral Tegmental Area Bidirectionally Regulates Behavioral Sensitivity to Cocaine
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GIRK Channel Activity in Dopamine Neurons of the Ventral Tegmental Area Bidirectionally Regulates Behavioral Sensitivity to Cocaine

机译:多巴胺神经元的Girk信道活动腹侧腹部区域面积双向调节对可卡因的行为敏感性

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摘要

Dopamine (DA) neurons of the VTA have been widely implicated in the cellular and behavioral responses to drugs of abuse. Inhibitory G protein signaling mediated by GABA(B) receptors(GABA(B)Rs) and D-2 DA receptors (D2Rs) regulates the excitability of VTA DA neurons, DA neurotransmission, and behaviors modulated by DA. Most of the somatodendritic inhibitory effect of GABA(B)R and D-2 R activation on DA neurons reflects the activation of G protein-gated inwardly rectifying K+ (GIRK) channels. Furthermore, GIRK-dependent signaling in VTA DA neurons can be weakened by exposure to psychostimulants and strengthened by phasic DA neuron firing. The objective of this study was to determine how the strength of GIRK channel activity in VTA DA neurons influences sensitivity to cocaine. We used a Cre-dependent viral strategy to overexpress the individual GIRK channel subunits in VTA DA neurons of male and female adult mice, leading to enhancement (GIRK2) or suppression (GIRK3) of GIRK channel activity. Overexpression of GIRK3 decreased somatodendritic GABA(B)R- and D2R-dependent signaling and increased cocaine-induced locomotor activity, whereas overexpression of GIRK2 increased GABA(B)R-dependent signaling and decreased cocaine-induced locomotion. Neither manipulation impacted anxiety-or depression-related behavior, despite the link between such behaviors and DA signaling. Together, these data show that behavioral sensitivity to cocaine in mice is inversely proportional to the strength of GIRK channel activity in VTA DA neurons and suggest that direct activators of the unique VTA DA neuron GIRK channel subtype (GIRK2/GIRK3 heteromer) could represent a promising therapeutic target for treatment of addiction.
机译:VTA的多巴胺(DA)神经元已被广泛涉及对滥用药物的细胞和行为响应。由GABA(B)受体(GABA(B)RS)和D-2DA受体(D2RS)介导的抑制蛋白信号传导调节VTA DA神经元,DA神经递血和由DA调节的行为的兴奋性。 GABA(B)R和D-2 r活化对DA神经元的大部分抑制作用反映了G蛋白门环绕的k +(Girk)通道的活化。此外,通过暴露于精神疗法和通过相位达神经元烧制而加强,可以在VTA Da神经元中依赖于Girk依赖性信号传导。本研究的目的是确定VTA DA神经元中GIRK信道活动的强度如何影响对可卡因的敏感性。我们使用CRE依赖性病毒策略过表达雄性和女性成年小鼠VTA Da神经元中的个体GIRK频道亚基,导致GIRK信道活动的增强(GIRK2)或抑制(GIRK3)。 GIRK3的过度表达减少了躯体抑制性GABA(B)r-和D2R依赖性信号传导和增加的可卡因诱导的运动活性,而GIRK2的过度表达增加了GABA(B)依赖性信号传导和降低的可卡因诱导的运动量。尽管这些行为与DA信令之间存在联系,但既不受到焦虑或抑郁相关行为的影响。这些数据表明,小鼠中的可卡因的行为敏感性与VTADa神经元中的GIRK信道活性的强度成反比,并表明独特的VTA da Neuron Girk信道亚型(Girk2 / Girk3异构体)的直接激活剂可以代表有希望的治疗成瘾治疗靶标。

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