Mancini Maria, Patel Jyoti C, Affinati Alison H, Witkovsky Paul, Rice Margaret E
Department of Neuroscience and Physiology, New York University Grossman School of Medicine, New York, New York 10016.
Neuroscience Institute, New York University Grossman School of Medicine, New York, New York 10016.
J Neurosci. 2022 Aug 31;42(35):6668-6679. doi: 10.1523/JNEUROSCI.0238-22.2022.
Dopamine (DA) is a critical regulator of striatal network activity and is essential for motor activation and reward-associated behaviors. Previous work has shown that DA is influenced by the reward value of food, as well as by hormonal factors that reguate food intake and energy expenditure. Changes in striatal DA signaling also have been linked to aberrant eating patterns. Here we test the effect of leptin, an adipocyte-derived hormone involved in feeding and energy homeostasis regulation, on striatal DA release and uptake. Immunohistochemical evaluation identified leptin receptor (LepR) expression throughout mouse striatum, including on striatal cholinergic interneurons (ChIs) and their extensive processes. Using fast-scan cyclic voltammetry (FSCV), we found that leptin causes a concentration-dependent increase in evoked extra-cellular DA concentration ([DA]) in dorsal striatum (dStr) and nucleus accumbens (NAc) core and shell in male mouse striatal slices, and also an increase in the rate of DA uptake. Further, we found that leptin increases ChI excitability, and that the enhancing effect of leptin on evoked [DA] is lost when nicotinic acetylcholine (ACh) receptors are antagonized or when examined in striatal slices from mice lacking ACh synthesis. Evaluation of signaling pathways underlying leptin's action revealed a requirement for intracellular Ca, and the involvement of different downstream pathways in dStr and NAc core versus NAc shell. These results provide the first evidence for dynamic regulation of DA release and uptake by leptin within brain motor and reward pathways, and highlight the involvement of ChIs in this process. Given the importance of striatal dopamine (DA) in reward, motivation, motor behavior and food intake, identifying the actions of metabolic hormones on DA release in striatal subregions should provide new insight into factors that influence DA-dependent motivated behaviors. We find that one of these hormones, leptin, boosts striatal DA release through a process involving striatal cholinergic interneurons (ChIs) and nicotinic acetylcholine (ACh) receptors. Moreover, we find that the intracellular cascades downstream from leptin receptor (LepR) activation that lead to enhanced DA release differ among striatal subregions. Thus, we not only show that leptin regulates DA release, but also identify characteristics of this process that could be harnessed to alter pathologic eating behaviors.
多巴胺(DA)是纹状体网络活动的关键调节因子,对运动激活和奖赏相关行为至关重要。先前的研究表明,DA受食物奖赏价值以及调节食物摄入和能量消耗的激素因素影响。纹状体DA信号的变化也与异常饮食模式有关。在此,我们测试了瘦素(一种参与进食和能量稳态调节的脂肪细胞衍生激素)对纹状体DA释放和摄取的影响。免疫组织化学评估确定了瘦素受体(LepR)在整个小鼠纹状体中的表达,包括在纹状体胆碱能中间神经元(ChIs)及其广泛的突起上。使用快速扫描循环伏安法(FSCV),我们发现瘦素导致雄性小鼠纹状体切片中背侧纹状体(dStr)、伏隔核(NAc)核心和壳区诱发的细胞外DA浓度([DA])呈浓度依赖性增加,并且DA摄取速率也增加。此外,我们发现瘦素增加了ChI的兴奋性,当烟碱型乙酰胆碱(ACh)受体被拮抗时,或者在缺乏ACh合成的小鼠的纹状体切片中进行检测时,瘦素对诱发的[DA]的增强作用消失。对瘦素作用的信号通路评估揭示了细胞内Ca的需求,以及dStr和NAc核心与NAc壳区不同下游通路的参与。这些结果首次证明了瘦素在脑运动和奖赏通路中对DA释放和摄取的动态调节,并突出了ChIs在此过程中的参与。鉴于纹状体多巴胺(DA)在奖赏、动机、运动行为和食物摄入中的重要性,确定代谢激素对纹状体亚区域DA释放的作用应该为影响DA依赖性动机行为的因素提供新的见解。我们发现这些激素之一,瘦素,通过一个涉及纹状体胆碱能中间神经元(ChIs)和烟碱型乙酰胆碱(ACh)受体的过程促进纹状体DA释放。此外,我们发现瘦素受体(LepR)激活后导致DA释放增强的细胞内级联反应在纹状体亚区域之间有所不同。因此,我们不仅表明瘦素调节DA释放,还确定了这一过程的特征,可用于改变病理性饮食行为。