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首页> 外文期刊>Translational psychiatry. >Deletion of Dtnbp1 in mice impairs threat memory consolidation and is associated with enhanced inhibitory drive in the amygdala
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Deletion of Dtnbp1 in mice impairs threat memory consolidation and is associated with enhanced inhibitory drive in the amygdala

机译:删除小鼠的DTNBP1损害威胁记忆合并,并与Amygdala的增强抑制驱动有关

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Schizophrenia is a severe and highly heritable disorder. Dystrobrevin-binding protein 1 (DTNBP1), also known as dysbindin-1, has been implicated in the pathophysiology of schizophrenia. Specifically, dysbindin-1 mRNA and protein expression are decreased in the brains of subjects with this disorder. Mice lacking dysbinidn-1 also display behavioral phenotypes similar to those observed in schizophrenic patients. However, it remains unknown whether deletion of dysbindin-1 impacts functions of the amygdala, a brain region that is critical for emotional processing, which is disrupted in patients with schizophrenia. Here, we show that dysbindin-1 is expressed in both excitatory and inhibitory neurons of the basolateral amygdala (BLA). Deletion of dysbindin-1 in male mice (Dys?/?) impaired cued and context-dependent threat memory, without changes in measures of anxiety. The behavioral deficits observed in Dys?/? mice were associated with perturbations in the BLA, including the enhancement of GABAergic inhibition of pyramidal neurons, increased numbers of parvalbumin interneurons, and morphological abnormalities of dendritic spines on pyramidal neurons. Our findings highlight an important role for dysbindin-1 in the regulation of amygdalar function and indicate that enhanced inhibition of BLA pyramidal neuron activity may contribute to the weakened threat memory expression observed in Dys?/? mice.
机译:精神分裂症是一种严重和高度遗传的疾病。 Dystrobrevin结合蛋白1(DTNBP1),也称为呼吸困难-1,已涉及精神分裂症的病理生理学。具体地,在具有这种疾病的受试者的大脑中,脱粘蛋白-1 mRNA和蛋白表达减少。缺乏呼吸困难的小鼠也显示出类似于精神分裂症患者观察到的人的行为表型。然而,它仍然未知是否缺失嗜粘土-1的氨胺蛋白-1的影响,这是一种对情绪加工至关重要的大脑区域,这被精神分裂症患者中断。在这里,我们表明Dysbindin-1在Basolateral amygdala(BLA)的兴奋性和抑制性神经元中表达。在雄性小鼠(DYS?/)损伤的呼吸困难和上下文依赖性威胁记忆中缺失,没有变化的焦虑。观察到的行为缺陷在饮食中观察到?/?小鼠与BLA的扰动有关,包括增强锥形神经元的加法力抑制,吡嘧术脊髓细胞间的增加数量,锥形神经元的形态异常。我们的研究结果突出了嗜粘土-1在Amygdalar函数的调节中的重要作用,表明增强了Bla金字塔神经元活性的抑制可能有助于在DYS中观察到的弱化威胁记忆表达?/?老鼠。

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