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Neural Circuits: Differential expression of long-term potentiation among identified inhibitory inputs to dopamine neurons

机译:神经回路:识别出的多巴胺神经元抑制性输入中长期增强的差异表达

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摘要

The in vivo firing pattern of ventral tegmental area (VTA) dopamine neurons is controlled by GABA afferents originating primarily from the nucleus accumbens (NAc), rostromedial tegmental nucleus (RMTg), and local GABA neurons within the VTA. Although different forms of plasticity have been observed from GABA inputs to VTA dopamine neurons, one dependent on cyclic GMP synthesis and the other on adenylyl cyclase activation, it is unknown whether plasticity is differentially expressed in each. Using an optogenetic strategy, we show that identified inhibitory postsynaptic currents (IPSCs) from local VTA GABA neurons and NAc afferents exhibit a cyclic GMP-dependent long-term potentiation (LTP) that is capable of inhibiting the firing activity of dopamine neurons. However, this form of LTP was not induced from RMTg afferents. Only an adenylyl cyclase-mediated increase in IPSCs was exhibited by all three inputs. Thus discrete plasticity mechanisms recruit overlapping but different subsets of GABA inputs to VTA dopamine neurons.>NEW & NOTEWORTHY We describe a mapping of plasticity expression, mediated by different mechanisms, among three distinct GABA afferents to ventral tegmental area (VTA) dopamine neurons: the rostromedial tegmental nucleus, the nucleus accumbens, and the local GABA neurons within the VTA known to synapse on VTA dopamine neurons. This work is the first demonstration that discrete plasticity mechanisms recruit overlapping but different subsets of GABA inputs to VTA dopamine neurons.
机译:腹侧被盖区(VTA)多巴胺神经元的体内放电模式受VABA内主要来自伏隔核(NAc),结节状被盖核(RMTg)和局部GABA神经元的GABA传入控制。尽管从VABA多巴胺神经元的GABA输入观察到了不同形式的可塑性,一种依赖于循环GMP合成,而另一种依赖于腺苷酸环化酶激活,但未知在每种形式中是否可塑性不同。使用光遗传学策略,我们表明从本地VTA GABA神经元和NAc传入的识别的抑制性突触后电流(IPSCs)表现出循环GMP依赖的长期增强(LTP),能够抑制多巴胺神经元的放电活性。但是,这种形式的LTP不是从RMTg传入诱导的。所有三个输入仅显示出腺苷酸环化酶介导的IPSC增加。因此,离散的可塑性机制向VTA多巴胺神经元募集了重叠但不同的GABA输入子集。> NEW&NOTEWORTHY 我们描述了由不同机制介导的三个不同的GABA传入传入腹侧被盖区的可塑性表达的映射(多巴胺神经元(VTA):多角膜被膜核,伏伏核和VTA内已知会突触VTA多巴胺神经元的局部GABA神经元。这项工作是第一个证明离散的可塑性机制募集重叠但不同的GABA输入子集到VTA多巴胺神经元的方法。

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