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Dysbindin Deficiency Modifies the Expression of GABA Neuron and Ion Permeation Transcripts in the Developing Hippocampus

机译:Dysbindin缺乏症修饰了海马发展中国家中GABA神经元和离子渗透转录本的表达

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The neurodevelopmental factor dysbindin is required for synapse function and GABA interneuron development. Dysbindin protein levels are reduced in the hippocampus of schizophrenia patients. Mouse dysbindin genetic defects and other mouse models of neurodevelopmental disorders share defective GABAergic neurotransmission and, in several instances, a loss of parvalbumin-positive interneuron phenotypes. This suggests that mechanisms downstream of dysbindin deficiency, such as those affecting GABA interneurons, could inform pathways contributing to or ameliorating diverse neurodevelopmental disorders. Here we define the transcriptome of developing wild type and dysbindin null Bloc1s8sdy/sdy mouse hippocampus in order to identify mechanisms downstream dysbindin defects. The dysbindin mutant transcriptome revealed previously reported GABA parvalbumin interneuron defects. However, the Bloc1s8sdy/sdy transcriptome additionally uncovered changes in the expression of molecules controlling cellular excitability such as the cation-chloride cotransporters NKCC1, KCC2, and NCKX2 as well as the potassium channel subunits Kcne2 and Kcnj13. Our results suggest that dysbindin deficiency phenotypes, such as GABAergic defects, are modulated by the expression of molecules controlling the magnitude and cadence of neuronal excitability.
机译:神经发育因子dysbindin是突触功能和GABA interneuron发育所必需的。精神分裂症患者海马中的dysbindin蛋白水平降低。小鼠dysbindin遗传缺陷和其他神经发育障碍小鼠模型具有缺陷的GABA能神经传递,在某些情况下会丧失小白蛋白阳性的中间神经元表型。这表明,dysbindin缺乏症的下游机制(例如影响GABA interneurons的那些机制)可能会为导致或改善各种神经发育障碍的途径提供信息。在这里,我们定义了发育中的野生型和dysbindin null Bloc1s8sdy / sdy小鼠海马的转录组,以鉴定下游dysbindin缺陷的机制。 dysbindin突变体转录组揭示了先前报道的GABA小白蛋白中间神经元缺陷。然而,Bloc1s8sdy / sdy转录组还发现了控制细胞兴奋性的分子(例如阳离子-氯化物共转运蛋白NKCC1,KCC2和NCKX2以及钾通道亚基Kcne2和Kcnj13)的表达变化。我们的结果表明,dysbindin缺乏表型,如GABA能缺陷,是由控制神经元兴奋性大小和节奏的分子表达调节的。

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