Amygdala-liver signaling orchestrates rapid glycemic responses to stress and drives stress-induced metabolic dysfunction

杏仁核-肝脏信号传导协调对压力的快速血糖反应并驱动压力引起的代谢功能障碍

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作者:Sarah Stanley, Kavya Devarakonda, Richard O'Connor, Maria Jimenez-Gonzalez, Alexandra Alvarsson, Rollie Hampton, Diego Espinoza, Rosemary Li, Abigail Shtekler, Kaetlyn Conner, Mitchell Bayne, Darline Garibay, Jessie Martin, Vanessa Lehmann, Liheng Wang, Paul Kenny

Abstract

Behavioral adaptations to environmental threats are crucial for survival and necessitate rapid deployment of energy reserves. The amygdala coordinates behavioral adaptations to threats, but little is known about its involvement in underpinning metabolic adaptations. Here, we show that acute stress activates medial amygdala (MeA) neurons that innervate the ventromedial hypothalamus (MeAVMH neurons), which precipitates hyperglycemia and hypophagia. The glycemic actions of MeAVMH neurons occur independent of adrenal or pancreatic glucoregulatory hormones. Instead, using whole-body virus tracing, we identify a polysynaptic connection from MeA to the liver, which promotes the rapid synthesis of glucose by hepatic gluconeogenesis. Repeated stress exposure disrupts MeA control of blood glucose and appetite, resulting in diabetes-like dysregulation of glucose homeostasis and weight gain. Our findings reveal a novel amygdala-liver axis that regulates rapid glycemic adaptations to stress and links recurrent stress to metabolic dysfunction.

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