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A GABAergic cell type in the lateral habenula links hypothalamic homeostatic and midbrain motivation circuits with sex steroid signaling

机译:外侧ha管中的GABA能细胞类型将下丘脑稳态和中脑动力回路与性类固醇信号传导联系起来

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The lateral habenula (LHb) has a key role in integrating a variety of neural circuits associated with reward and aversive behaviors. There is limited information about how the different cell types and neuronal circuits within the LHb coordinate physiological and motivational states. Here, we report a cell type in the medial division of the LHb (LHbM) in male rats that is distinguished by: (1) a molecular signature for GABAergic neurotransmission (Slc32a1/VGAT) and estrogen receptor (Esr1/ERα) expression, at both mRNA and protein levels, as well as the mRNA for vesicular glutamate transporter Slc17a6/VGLUT2, which we term the GABAergic estrogen-receptive neuron (GERN); (2) its axonal projection patterns, identified by in vivo juxtacellular labeling, to both local LHb and to midbrain modulatory systems; and (3) its somatic expression of receptors for vasopressin, serotonin and dopamine, and mRNA for orexin receptor 2. This cell type is anatomically located to receive afferents from midbrain reward (dopamine and serotonin) and hypothalamic water and energy homeostasis (vasopressin and orexin) circuits. These afferents shared the expression of estrogen synthase (aromatase) and VGLUT2, both in their somata and axon terminals. We demonstrate dynamic changes in LHbM VGAT+ cell density, dependent upon gonadal functional status, that closely correlate with motivational behavior in response to predator and forced swim stressors. The findings suggest that the homeostasis and reward-related glutamatergic convergent projecting pathways to LHbMC employ a localized neurosteroid signaling mechanism via axonal expression of aromatase, to act as a switch for GERN excitation/inhibition output prevalence, influencing depressive or motivated behavior.
机译:外侧ha(LHb)在整合与奖赏和厌恶行为相关的各种神经回路中起关键作用。关于LHb中不同细胞类型和神经元回路如何协调生理和动机状态的信息有限。在这里,我们报告雄性大鼠LHb(LHbM)的内侧分裂中的一种细胞类型,其特征在于:(1)GABA能神经传递(Slc32a1 / VGAT)和雌激素受体(Esr1 /ERα)表达的分子标记mRNA和蛋白水平,以及水泡谷氨酸转运蛋白Slc17a6 / VGLUT2的mRNA,我们将其称为GABA能雌激素受体神经元(GERN); (2)通过体内近细胞标记,确定其对局部LHb和中脑调节系统的轴突投射模式; (3)血管加压素,5-羟色胺和多巴胺受体的体细胞表达以及食欲素受体2的mRNA。这种细胞类型在解剖学上定位为接受来自中脑奖赏(多巴胺和5-羟色胺)以及下丘脑水和能量稳态(血管加压素和食欲素)的传入)电路。这些传入体在其躯体和轴突末端均共享雌激素合酶(aromatase)和VGLUT2的表达。我们证明了LHbM VGAT +细胞密度的动态变化,取决于性腺功能状态,该动态变化与对捕食者和强迫游泳应激反应的动机行为密切相关。研究结果表明,向LHbMC的稳态和与奖励有关的谷氨酸能收敛性投射途径通过芳香化酶轴突表达采用了局部神经甾类信号传导机制,以作为GERN激发/抑制输出流行的开关,影响抑郁或激励行为。

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