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Metabotropic Glutamate Receptor 5 in Amygdala Target Neurons Regulates Susceptibility to Chronic Social Stress

机译:杏仁核靶神经元中的代谢型谷氨酸受体 5 调节对慢性社会压力的易感性

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? 2022 Society of Biological PsychiatryBackground: Metabotropic glutamate receptor 5 (mGluR5) has been implicated in stress-related psychiatric disorders, particularly major depressive disorder. Although growing evidence supports the proresilient role of mGluR5 in corticolimbic circuitry in the depressive-like behaviors following chronic stress exposure, the underlying neural mechanisms, including circuits and molecules, remain unknown. Methods: We measured the c-Fos expression and probability of neurotransmitter release in and from basolateral amygdala (BLA) neurons projecting to the medial prefrontal cortex (mPFC) and to the ventral hippocampus (vHPC) after chronic social defeat stress. The role of BLA projections in depressive-like behaviors was assessed using optogenetic manipulations, and the underlying molecular mechanisms of mGluR5 and downstream signaling were investigated by Western blotting, viral-mediated gene transfer, and pharmacological manipulations. Results: Chronic social defeat stress disrupted neural activity and glutamatergic transmission in both BLA projections. Optogenetic activation of BLA projections reversed the detrimental effects of chronic social defeat stress on depressive-like behaviors and mGluR5 expression in the mPFC and vHPC. Conversely, inhibition of BLA projections of mice undergoing subthreshold social defeat stress induced a susceptible phenotype and mGluR5 reduction. These two BLA circuits appeared to act in an independent way. We demonstrate that mGluR5 overexpression in the mPFC or vHPC was proresilient while the mGluR5 knockdown was prosusceptible and that the proresilient effects of mGluR5 are mediated through distinctive downstream signaling pathways in the mPFC and vHPC. Conclusions: These findings identify mGluR5 in the mPFC and vHPC that receive BLA inputs as a critical mediator of stress resilience, highlighting circuit-specific signaling for depressive-like behaviors.
机译:?2022 年生物精神病学学会背景:代谢型谷氨酸受体 5 (mGluR5) 与应激相关精神疾病有关,尤其是重度抑郁症。尽管越来越多的证据支持mGluR5在皮质边缘回路中长期应激暴露后抑郁样行为中的弹性作用,但潜在的神经机制,包括回路和分子,仍然未知。方法:我们测量了慢性社交失败应激后投射到内侧前额叶皮层 (mPFC) 和腹侧海马 (vHPC) 的基底外侧杏仁核 (BLA) 神经元内和从基底外侧杏仁核 (BLA) 神经元释放的 c-Fos 表达和概率。使用光遗传学操作评估BLA投射在抑郁样行为中的作用,并通过蛋白质印迹、病毒介导的基因转移和药理学操作研究mGluR5和下游信号转导的潜在分子机制。结果:慢性社交失败压力破坏了两种 BLA 投射中的神经活动和谷氨酸能传递。BLA 投射的光遗传学激活逆转了慢性社交失败应激对 mPFC 和 vHPC 中抑郁样行为和 mGluR5 表达的不利影响。相反,抑制经历亚阈值社会失败应激的小鼠的BLA投射诱导易感表型和mGluR5降低。这两个BLA电路似乎以一种独立的方式起作用。我们证明 mPFC 或 vHPC 中的 mGluR5 过表达是有弹性的,而 mGluR5 敲低是易感的,并且 mGluR5 的弹性作用是通过 mPFC 和 vHPC 中独特的下游信号通路介导的。结论:这些发现将接受BLA输入的mPFC和vHPC中的mGluR5确定为压力恢复的关键介质,突出了抑郁样行为的电路特异性信号传导。

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