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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Presynaptic Regulation of Leptin in a Defined Lateral Hypothalamus-Ventral Tegmental Area Neurocircuitry Depends on Energy State
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Presynaptic Regulation of Leptin in a Defined Lateral Hypothalamus-Ventral Tegmental Area Neurocircuitry Depends on Energy State

机译:瘦蛋白在定义的侧面下丘脑 - 腹侧腹膜区域神经速率下的突触突触依赖于能量状态

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摘要

Synaptic transmission controls brain activity and behaviors, including food intake. Leptin, an adipocyte-derived hormone, acts on neurons located in the lateral hypothalamic area (LHA) to maintain energy homeostasis and regulate food intake behavior. The specific synaptic mechanisms, cell types, and neural projections mediating this effect remain unclear. In male mice, using pathway-specific retrograde tracing, whole-cell patch-clamp recordings and post hoc cell type identification, we found that leptin reduces excitatory synaptic strength onto both melanin-concentrating hormone-and orexin-expressing neurons projecting from the LHA to the ventral tegmental area (VTA), which may affect dopamine signaling and motivation for feeding. A presynaptic mechanism mediated by distinct intracellular signaling mechanisms may account for this regulation by leptin. The regulatory effects of leptin depend on intact leptin receptor signaling. Interestingly, the synaptic regulatory function of leptin in the LHA-to-VTA neuronal pathway is highly sensitive to energy states: both energy deficiency (acute fasting) and excessive energy storage (high-fat diet-induced obesity) blunt the effect of leptin. These data revealed that leptin may regulate synaptic transmission in the LHA-to-VTA neurocircuitry in an inverted "U-shape" fashion dependent on plasma glucose levels and related to metabolic states.
机译:突触传输控制脑活动和行为,包括食物摄入量。 Leptin是一种脂肪细胞衍生的激素,作用于位于侧丘脑区域(LHA)中的神经元,以保持能量稳态和调节食物摄入行为。调解这种效果的特定突触机制,细胞类型和神经投影仍然尚不清楚。在雄性小鼠中,使用途径特异性逆行跟踪,全细胞贴片夹具和后HOC细胞类型鉴定,我们发现瘦蛋白将兴奋性突触强度降低到黑色素浓缩的激素 - 和表达来自LHA的orexin的神经元中的兴奋性突触强度腹侧腹部区域(VTA),可能影响多巴胺信号传导和供饲的动机。由不同的细胞内信号传导机制介导的突触前机制可能涉及瘦素的这种调节。瘦素的调节效应取决于完整的瘦素受体信号传导。有趣的是,LHA-to-VTA神经元途径中Leptin的突触调节功能对能量状态非常敏感:能量缺乏(急性禁食)和过量的能量储存(高脂肪饮食诱导的肥胖)钝化瘦素的效果。这些数据表明,瘦素可以以依赖于血浆葡萄糖水平的倒置的“U形”方式调节LHA-TO-VTA神经系列中的突触传递,并与代谢态相关。

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