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首页> 外文期刊>Nature Communications >Circuit-specific hippocampal ΔFosB underlies resilience to stress-induced social avoidance
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Circuit-specific hippocampal ΔFosB underlies resilience to stress-induced social avoidance

机译:电路特异性海马ΔFOSB下潜抵御压力引起的社会避税

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Chronic stress is a key risk factor for mood disorders like depression, but the stress-induced changes in brain circuit function and gene expression underlying depression symptoms are not completely understood, hindering development of novel treatments. Because of its projections to brain regions regulating reward and anxiety, the ventral hippocampus is uniquely poised to translate the experience of stress into altered brain function and pathological mood, though the cellular and molecular mechanisms of this process are not fully understood. Here, we use a novel method of circuit-specific gene editing to show that the transcription factor ΔFosB drives projection-specific activity of ventral hippocampus glutamatergic neurons causing behaviorally diverse responses to stress. We establish molecular, cellular, and circuit-level mechanisms for depression- and anxiety-like behavior in response to stress and use circuit-specific gene expression profiling to uncover novel downstream targets as potential sites of therapeutic intervention in depression. Chronic stress is a risk factor for mood disorders, yet the molecular and circuit mechanisms of stress-induced changes are not well understood. Here, the authors report the role of the transcription factor ΔFosB in driving activity changes in response to stress in glutamatergic neurons in the ventral hippocampus that project to nucleus accumben.
机译:慢性应激是情绪障碍等抑郁症的关键危险因素,但脑电路功能和基因表达的应激诱导的抑郁症状症状的变化尚未完全理解,妨碍了新型治疗的发展。由于其对脑区调节奖励和焦虑的预测,腹侧海马是独特的准备,以将压力的经验转化为改变的大脑功能和病理情绪,尽管该过程的细胞和分子机制不完全理解。在这里,我们使用一种新的电路基因编辑方法,表明转录因子ΔFOSB驱动腹侧海马谷氨酸谷氨酸神经元的投影特异性,导致行为各种对应激的反应。我们建立了用于抑郁和焦虑的行为的分子,细胞和电路水平机制,响应于应力和使用电路特异性基因表达分析,以发现新的下游靶标作为抑郁症治疗介入的潜在部位。慢性应激是情绪障碍的危险因素,但应激诱导的变化的分子和电路机制尚不清楚。在这里,作者报告了转录因子ΔFOSB在腹侧海马中谷胱甘肽神经元的应激响应的转化活性变化的作用。

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