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CRFR1 in AgRP Neurons Modulates Sympathetic Nervous System Activity to Adapt to Cold Stress and Fasting

机译:AgRP神经元中的CRFR1调节交感神经系统活动以适应冷应激和禁食

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Signaling by the corticotropin-releasing factor receptor type 1 (CRFR1) plays an important role in mediating the autonomic response to stressful challenges. Multiple hypothalamic nuclei regulate sympathetic outflow. Although CRFR1 is highly expressed in the arcuate nucleus (Arc) of the hypothalamus, the identity of these neurons and the role of CRFR1 here are presently unknown. Our studies show that nearly half of Arc-CRFR1 neurons co-express agouti-related peptide (AgRP), half of which originate from POMC precursors. Arc-CRFR1 neurons are innervated by CRF neurons in the hypothalamic paraventricular nucleus, and CRF application decreases AgRP(+)CRFR1(+) neurons' excitability. Despite similar anatomy in both sexes, only female mice selectively lacking CRFR1 in AgRP neurons showed a maladaptive thermogenic response to cold and reduced hepatic glucose production during fasting. Thus, CRFR1, in a subset of AgRP neurons, plays a regulatory role that enables appropriate sympathetic nervous system activation and consequently protects the organism from hypothermia and hypoglycemia.
机译:1型促肾上腺皮质激素释放因子受体(CRFR1)发出的信号在介导对压力挑战的自主反应中起重要作用。下丘脑多核调节交感神经流出。尽管CRFR1在下丘脑的弓形核(Arc)中高度表达,但是这些神经元的身份和CRFR1的作用目前尚不清楚。我们的研究表明,将近一半的Arc-CRFR1神经元共表达刺豚鼠相关肽(AgRP),其中一半来自POMC前体。 Arc-CRFR1神经元受下丘脑室旁核中CRF神经元的支配,而CRF的应用会降低AgRP(+)CRFR1(+)神经元的兴奋性。尽管两性的解剖结构相似,但只有AgRP神经元中选择性缺乏CRFR1的雌性小鼠对寒冷表现出适应不良的生热反应,并且在禁食期间肝葡萄糖生成减少。因此,在AgRP神经元的子集中,CRFR1发挥调节作用,使适当的交感神经系统活化,从而保护有机体免于体温过低和血糖过低。

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