首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >BNST GluN2D-Containing NMDA Receptors Influence Anxiety- and Depressive-like Behaviors and Modulate Cell-Specific Excitatory/Inhibitory Synaptic Balance
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BNST GluN2D-Containing NMDA Receptors Influence Anxiety- and Depressive-like Behaviors and Modulate Cell-Specific Excitatory/Inhibitory Synaptic Balance

机译:含有BNST GLUN2D的NMDA受体会影响焦虑和抑郁的行为并调节细胞特异性兴奋/抑制突触平衡

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摘要

Excitatory signaling mediated by NMDARs has been shown to regulate mood disorders. However, current treatments targeting NMDAR subtypes have shown limited success in treating patients, highlighting a need for alternative therapeutic targets. Here, we identify a role for GluN2D-containing NMDARs in modulating emotional behaviors and neural activity in the bed nucleus of the stria terminalis (BNST). Using a GluN2D KO mouse line (GluN2D(-/-)), we assessed behavioral phenotypes across tasks modeling emotional behavior. We then used a combination of ex vivo electrophysiology and in vivo fiber photometry to assess changes in BNST plasticity, cell-specific physiology, and cellular activity profiles. GluN2D(-/-) male mice exhibit evidence of exacerbated negative emotional behavior, and a deficit in BNST synaptic potentiation. We also found that GluN2D is functionally expressed on corticotropin-releasing factor (CRF)-positive BNST cells implicated in driving negative emotional states, and recordings in mice of both sexes revealed increased excitatory and reduced inhibitory drive onto GluN2D(-/-) BNST-CRF cells ex vivo and increased activity in vivo. Using a GluN2D conditional KO line (GluN2D(flx/flx)) to selectively delete the subunit from the BNST, we find that BNST-GluN2D(flx/flx) male mice exhibit increased depressive-like behaviors, as well as altered NMDAR function and increased excitatory drive onto BNST-CRF neurons. Together, this study supports a role for GluN2D-NMDARs in regulating emotional behavior through their influence on excitatory signaling in a region-specific manner, and suggests that these NMDARs may serve as a novel target for selectively modulating glutamate signaling in stress-responsive structures and cell populations.
机译:已显示由NMDAR介导的兴奋信号传导调节情绪障碍。然而,目前靶向NMDAR亚型的治疗在治疗患者方面表现出有限的成功,突出了对替代治疗靶标的需要。在这里,我们鉴定了含有Glun2D的NMDAR的作用,以调节StriaSizoris(BNST)的床核中的情绪行为和神经活动。使用GLUN2D KO鼠标线(GLUN2D( - / - )),我们评估了跨任务的行为表型,建模情绪行为。然后,我们使用了前体内电生理学和体内纤维测光的组合来评估BNST塑性,细胞特异性生理学和细胞活性谱的变化。 GLUN2D( - / - )雄性小鼠表现出加剧的负面情绪行为的证据,以及BNST突触潜力的缺陷。我们还发现,GLUN2D在Corticotropin的释放因子(CRF) - 肌肤的阳性BNST细胞上涉及驱动负面情绪状态,并且两性小鼠的记录揭示了GLUN2D( - / - )BNST-的兴奋性和减少的抑制驱动CRF细胞以体内和体内活性增加。使用GLUN2D条件KO线(GLUN2D(FLX / FLX))选择性地从BNST中删除亚基,我们发现BNST-GLUN2D(FLX / FLX)雄性小鼠表现出增加的抑郁样行为,以及改变的NMDAR功能和增加兴奋性驱动到BNST-CRF神经元。该研究在一起,支持GLUN2D-NMDARS通过以特异性方式对兴奋信号传导的影响来调节情绪行为的作用,并表明这些NMDARS可以用作在应力响应结构中选择性地调节谷氨酸信号传导的新靶标。细胞群体。

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