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AGRP Neurons Project to the Medial Preoptic Area and Modulate Maternal Nest-Building

机译:AGRP神经元投射到内侧视前区并调节母巢的建立

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摘要

AGRP (agouti-related neuropeptide) expressing inhibitory neurons sense caloric needs of an animal to coordinate homeostatic feeding. Recent evidence suggests that AGRP neurons also suppress competing actions and motivations to mediate adaptive behavioral selection during starvation. Here, in adult mice of both sexes we show that AGRP neurons form inhibitory synapses onto ∼30% neurons in the medial preoptic area (mPOA), a region critical for maternal care. Remarkably, optogenetically stimulating AGRP neurons decreases maternal nest-building while minimally affecting pup retrieval, partly recapitulating suppression of maternal behaviors during food restriction. In parallel, optogenetically stimulating AGRP projections to the mPOA or to the paraventricular nucleus of hypothalamus but not to the LHA (lateral hypothalamus area) similarly decreases maternal nest-building. Chemogenetic inhibition of mPOA neurons that express Vgat (vesicular GABA transporter), the population targeted by AGRP terminals, also decreases maternal nest-building. In comparison, chemogenetic inhibition of neurons in the LHA that express vesicular glutamate transporter 2, another hypothalamic neuronal population critical for feeding and innate drives, is ineffective. Importantly, nest-building during low temperature thermal challenge is not affected by optogenetic stimulation of AGRP→mPOA projections. Finally, via optogenetic activation and inhibition we show that distinctive subsets of mPOA Vgat+ neurons likely underlie pup retrieval and maternal nest-building. Together, these results show that AGRP neurons can modulate maternal nest-building, in part through direct projections to the mPOA. This study corroborates other recent discoveries and underscores the broad functions that AGRP neurons play in antagonizing rivalry motivations to modulate behavioral outputs during hunger.>SIGNIFICANCE STATEMENT In order for animals to initiate ethologically appropriate behaviors, they must typically decide between behavioral repertoires driven by multiple and often conflicting internal states. How neural pathways underlying individual behaviors interact to coherently modulate behavioral outputs, in particular to achieve a proper balance between behaviors that serve immediate individual needs versus those that benefit the propagation of the species, remains poorly understood. Here, by investigating projections from a neuronal population known to drive hunger behaviors to a brain region critical for maternal care, we show that activation of AGRP→mPOA projections in females dramatically inhibits maternal nest-building while leaving mostly intact pup retrieval behavior. Our findings shed new light on neural organization of behaviors and neural mechanisms that coordinate behavioral selection.
机译:表达抑制性神经元的AGRP(agouti相关神经肽)可感应动物的热量需求,以协调体内的稳态喂养。最近的证据表明,AGRP神经元还抑制竞争行为和动机,以在饥饿期间介导适应性行为选择。在这里,我们发现在成年雌性小鼠中,AGRP神经元在视前内侧区域(mPOA)〜30%的神经元上形成抑制性突触,该区域对孕产妇保健至关重要。值得注意的是,光遗传学上刺激AGRP神经元减少了母巢的建立,同时对幼犬的取回影响最小,部分概括了限制食物期间母体行为的抑制。同时,通过光遗传学刺激AGRP投射到下丘脑的mPOA或脑室旁核,而不是LHA(下丘脑外侧区域),同样会减少产妇的巢式构建。对AGRP末端靶向的Vgat(囊泡GABA转运蛋白)表达的mPOA神经元的化学生成抑制作用也降低了母体筑巢的能力。相比之下,LHA中表达水泡谷氨酸转运蛋白2的神经元的化学生成抑制作用无效,这是下丘脑对进食和先天性驱动至关重要的另一类人口。重要的是,在低温热挑战期间筑巢不受AGRP→mPOA预测的光遗传刺激的影响。最后,通过光遗传学激活和抑制,我们表明mPOA Vgat +神经元的不同亚群可能是幼犬取回和产妇筑巢的基础。在一起,这些结果表明,AGRP神经元可以部分地通过直接预测mPOA来调节产妇的巢结构。这项研究证实了最近的其他发现,并强调了AGRP神经元在对抗饥饿动机以调节饥饿期间的行为输出方面发挥的广泛功能。>重要声明为使动物发起符合伦理学的行为,它们通常必须在动物之间做出决定。由多种且经常相互冲突的内部状态驱动的行为方式。仍然难以理解个体行为背后的神经通路如何相互作用以协调地调节行为输出,特别是在满足当下个人需求的行为与有益于物种繁殖的行为之间取得适当的平衡。在这里,通过调查已知将饥饿行为驱至对孕产妇保健至关重要的大脑区域的神经元群体的预测,我们表明,女性中AGRP→mPOA预测的激活显着抑制了母体筑巢,同时又保留了完整的幼崽取回行为。我们的发现为行为的神经组织和协调行为选择的神经机制提供了新的思路。

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