IGF, Université, Montpellier, CNRS, Inserm, Montpellier F-34094, France; Department of Psychological and Brain Sciences, Krieger School of Arts and Sciences, Johns Hopkins University, Baltimore, MD 21218, USA.
Université, Bordeaux, Neurocentre Magendie, U1215, Bordeaux F-33077, France.
Prog Neuropsychopharmacol Biol Psychiatry. 2024 Feb 8;129:110883. doi: 10.1016/j.pnpbp.2023.110883. Epub 2023 Oct 17.
The selection and optimization of appropriate adaptive responses depends on interoceptive and exteroceptive stimuli as well as on the animal's ability to switch from one behavioral strategy to another. Although growing evidence indicate that dopamine D2R-mediated signaling events ensure the selection of the appropriate strategy for each specific situation, the underlying neural circuits through which they mediate these effects are poorly characterized. Here, we investigated the role of D2R signaling in a mesolimbic neuronal subpopulation expressing the Wolfram syndrome 1 (Wfs1) gene. This subpopulation is located within the nucleus accumbens, the central amygdala, the bed nucleus of the stria terminalis, and the tail of the striatum, all brain regions critical for the regulation of emotions and motivated behaviors. Using a mouse model carrying a temporally controlled deletion of D2R in WFS1-neurons, we demonstrate that intact D2R signaling in this neuronal population is necessary to regulate homeostasis-dependent food-seeking behaviors in both male and female mice. In addition, we found that reduced D2R signaling in WFS1-neurons impaired active avoidance learning and innate escape responses. Collectively, these findings identify a yet undocumented role for D2R signaling in WFS1-neurons as a novel effector through which dopamine optimizes appetitive behaviors and regulates defensive behaviors.
适当的适应性反应的选择和优化取决于内感受和外感受刺激,以及动物从一种行为策略切换到另一种行为策略的能力。尽管越来越多的证据表明,多巴胺 D2R 介导的信号事件确保了为每种特定情况选择合适的策略,但介导这些效应的潜在神经回路的特征描述很差。在这里,我们研究了 D2R 信号在表达沃尔夫拉姆综合征 1 (Wfs1) 基因的中脑边缘神经元亚群中的作用。该亚群位于伏隔核、杏仁中央核、终纹床核和纹状体尾部,所有这些脑区都对情绪和动机行为的调节至关重要。使用一种在 WFS1 神经元中具有时间控制的 D2R 缺失的小鼠模型,我们证明了该神经元群体中完整的 D2R 信号对于调节雄性和雌性小鼠中依赖于体内平衡的食物寻求行为是必要的。此外,我们发现,WFS1 神经元中 D2R 信号的减少损害了主动回避学习和先天逃避反应。总的来说,这些发现确定了 D2R 信号在 WFS1 神经元中的一个尚未被记录的作用,作为多巴胺优化食欲行为和调节防御行为的一种新的效应器。