Olfactory inputs to appetite neurons in the hypothalamus.

Donghui Kuang, Naresh K Hanchate, Chia-Ying Lee, Ashley Heck, Xiaolan Ye, Michidsaran Erdenebileg, Linda B Buck
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Abstract

The sense of smell has potent effects on appetite, but the underlying neural pathways remain undefined. Here we investigated how olfactory signals reach two subsets of appetite-linked neurons in the hypothalamic arcuate nucleus: AgRP (agouti-related peptide) neurons, which stimulate appetite, and POMC (pro-opiomelanocortin) neurons, which suppress it. Using polysynaptic viral tracing, we show that AgRP and POMC neurons receive indirect input from partially overlapping but distinct areas of the olfactory cortex, indicating that they process different sets of olfactory information. We also identify different complements of neurons directly upstream of AgRP and POMC neurons that can relay olfactory cortical signals to the appetite neurons. Single cell transcriptomics shows heterogeneous expression of neuromodulator receptors among AgRP neurons, suggesting variations in the signals they receive. Integrated viral tracing and RNA localization further reveals selected brain areas where upstream neurons express cognate receptor ligands. Together, these findings outline multiple pathways by which distinct olfactory and modulatory signals are differentially routed to neurons that promote versus inhibit appetite.

弓状核食欲神经元的嗅觉和神经肽输入
嗅觉对食欲有强烈的影响,但其潜在的神经机制在很大程度上还是个谜。下丘脑弓状核包含两个与食欲有关的神经元亚群:AgRP(激动相关肽)神经元能增强食欲,而POMC(原绒毛膜促皮质素)神经元则能抑制食欲。在这里,我们发现 AgRP 和 POMC 神经元从部分重叠的嗅皮层区域接受间接输入,从而确定了它们的气味信号来源。我们还在许多其他区域发现了直接位于 AgRP 或 POMC 神经元上游的神经元,从而确定了嗅觉皮层与 AgRP 或 POMC 神经元之间的潜在中继。对单个 AgRP 神经元的转录组分析表明,多种神经调节剂受体的表达存在差异。值得注意的是,这些受体的已知配体定义了特定脑区 AgRP 神经元直接上游的神经元子集。这些发现共同表明,高级嗅区可对AgRP和POMC食欲神经元产生不同的影响,AgRP神经元子集可受不同神经调节剂的调控,特定脑区AgRP神经元上游的神经元子集使用不同的神经调节剂,共同或以不同的组合来调节AgRP神经元,从而调节食欲。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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