被盖腹侧区
神经科学
伏隔核
加巴能
多巴胺
抑制性突触后电位
光遗传学
脑干
兴奋性突触后电位
腹侧苍白球
核心
生物
中枢神经系统
多巴胺能
基底神经节
苍白球
作者
Yong-lan Du,Siyao Zhou,Chenyan Ma,Hui Chen,Ana Du,Guochuang Deng,Yige Liu,Amanda J. Tose,Li Sun,Yijun Liu,Hangjun Wu,Huifang Lou,Yan‐Qin Yu,Ting Zhao,Stephan Lammel,Shumin Duan,Hongbin Yang
出处
期刊:Neuron
[Elsevier]
日期:2023-07-26
卷期号:111 (19): 3102-3118.e7
被引量:7
标识
DOI:10.1016/j.neuron.2023.06.021
摘要
GABAergic neurons in the laterodorsal tegmental nucleus (LDTGABA) encode aversion by directly inhibiting mesolimbic dopamine (DA). Yet, the detailed cellular and circuit mechanisms by which these cells relay unpleasant stimuli to DA neurons and regulate behavioral output remain largely unclear. Here, we show that LDTGABA neurons bidirectionally respond to rewarding and aversive stimuli in mice. Activation of LDTGABA neurons promotes aversion and reduces DA release in the lateral nucleus accumbens. Furthermore, we identified two molecularly distinct LDTGABA cell populations. Somatostatin-expressing (Sst+) LDTGABA neurons indirectly regulate the mesolimbic DA system by disinhibiting excitatory hypothalamic neurons. In contrast, Reelin-expressing LDTGABA neurons directly inhibit downstream DA neurons. The identification of separate GABAergic subpopulations in a single brainstem nucleus that relay unpleasant stimuli to the mesolimbic DA system through direct and indirect projections is critical for establishing a circuit-level understanding of how negative valence is encoded in the mammalian brain.
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