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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Dopamine inhibits GABA(A) currents in ventral tegmental area dopamine neurons via activation of presynaptic G-protein coupled inwardly-rectifying potassium channels.
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Dopamine inhibits GABA(A) currents in ventral tegmental area dopamine neurons via activation of presynaptic G-protein coupled inwardly-rectifying potassium channels.

机译:多巴胺通过激活突触前G蛋白偶联的向内整流钾离子通道来抑制腹侧被盖区多巴胺神经元中的GABA(A)电流。

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Dopamine (DA) neurons in the ventral tegmental area (VTA) constitute the origin of major dopaminergic neural pathways associated with essential functions including reward, motivation and cognition. Hence, regulation of VTA DA neurons' excitability is of important significance. Like other neurons, the activity level of VTA DA neurons is considerably determined by excitatory and inhibitory synaptic inputs. Here we show that DA itself, the most available modulator in the VTA, causes an inhibition of GABA receptor type A (GABA(A)R)-mediated evoked-IPSC (eIPSC) recorded from rat VTA DA neurons. The DA-induced inhibition was accomplished by activation of DA receptors, known to inhibit adenylyl cyclase activity (D2-like receptors), and was absent when these receptors were blocked. Moreover, blocking of either GABA receptor type B (GABA(B)R) or G-protein coupled inwardly-rectifying potassium (GIRK) channels was also found to effectively prevent the DA-induced inhibition of GABA(A)R eIPSC. In addition, we found that DA changes the values of both paired-pulse ratio (PPR) and coefficient of variation (CV) of GABA(A)R eIPSC amplitude, similar to the changes obtained by lowering the extracellular calcium concentration. Taken together, we propose that activation of D2-like receptors and GABA(B)R in the VTA enhances presynaptic GIRK channels activity, which in turn leads to reduced GABA release. The consequence of reduced GABA release on VTA DA neurons may contribute to their increased activity. Accordingly, a novel potential regulatory form of VTA DA neurons' excitability, which involves presynaptic potassium channels, is proposed.
机译:腹侧被盖区(VTA)中的多巴胺(DA)神经元构成了主要的多巴胺能神经通路的起源,该通路与包括奖励,动机和认知在内的基本功能有关。因此,调节VTA DA神经元的兴奋性具有重要意义。像其他神经元一样,VTA DA神经元的活动水平在很大程度上由兴奋性和抑制性突触输入决定。在这里,我们显示DA本身是VTA中最可用的调节剂,它会抑制从大鼠VTA DA神经元记录的GABA受体A型(GABA(A)R)介导的诱发性IPSC(eIPSC)。 DA诱导的抑制作用是通过激活DA受体(已知抑制腺苷酸环化酶活性(D2样受体))来完成的,而当这些受体被阻断时则不存在。此外,还发现阻断B型GABA受体(GABA(B)R)或G蛋白偶联的内向整流钾(GIRK)通道可有效防止DA诱导的GABA(A)R eIPSC抑制。此外,我们发现DA改变了GABA(A)R eIPSC振幅的成对脉冲比率(PPR)和变异系数(CV)的值,类似于通过降低细胞外钙浓度获得的变化。两者合计,我们建议激活V2中的D2样受体和GABA(B)R增强突触前GIRK通道的活性,进而导致GABA释放减少。 VTA DA神经元上GABA释放减少的结果可能是其活动增加的原因。因此,提出了一种新的潜在调节形式的VTA DA神经元的兴奋性,涉及突触前钾通道。

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