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首页> 外文期刊>Cerebral cortex >Downregulation of tonic GABAergic inhibition in a mouse model of fragile X syndrome.
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Downregulation of tonic GABAergic inhibition in a mouse model of fragile X syndrome.

机译:在脆性X综合征小鼠模型中对补品GABA的抑制作用下调。

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摘要

The absence of fragile X mental retardation protein results in the fragile X syndrome (FXS), a common form of mental retardation associated with attention deficit, autistic behavior, and epileptic seizures. The phenotype of FXS is reproduced in fragile X mental retardation 1 (fmr1) knockout (KO) mice that have region-specific altered expression of some gamma-aminobutyric acid (GABA(A)) receptor subunits. However, little is known about the characteristics of GABAergic inhibition in the subiculum of these animals. We employed patch-clamp recordings from subicular pyramidal cells in an in vitro slice preparation. In addition, semiquantitative polymerase chain reaction and western blot experiments were performed on subiculum obtained from wild-type (WT) and KO mice. We found that tonic GABA(A) currents were downregulated in fmr1 KO compared with WT neurons, whereas no significant differences were observed in phasic GABA(A) currents. Molecular biology analysis revealed that the tonic GABA(A) receptor subunits alpha5 and delta were underexpressed in the fmr1 KO mouse subiculum compared with WT. Because the subiculum plays a role in both cognitive functions and epileptic disorders, we propose that altered tonic inhibition in this structure contributes to the behavioral deficits and epileptic activity seen in FXS patients. This conclusion is in line with evidence implicating tonic GABA(A) inhibition in learning and memory.
机译:缺乏脆弱的X智力障碍蛋白会导致脆弱的X综合征(FXS),这是与注意力缺陷,自闭症行为和癫痫发作相关的常见智力障碍形式。 FXS的表型在脆弱的X智力低下1(fmr1)基因敲除(KO)小鼠中复制,这些小鼠具有某些γ-氨基丁酸(GABA(A))受体亚基的区域特异性表达变化。然而,关于这些动物的亚细亚基中的GABA能抑制的特征知之甚少。我们在体外切片制备中采用了亚锥体细胞的膜片钳记录。此外,对从野生型(WT)和KO小鼠获得的亚细胞进行了半定量聚合酶链反应和蛋白质印迹实验。我们发现,与野生型神经元相比,fmr1 KO中的补品GABA(A)电流被下调,而在相性GABA(A)电流中未观察到显着差异。分子生物学分析显示,与WT相比,fmr1 KO小鼠亚亚型的滋补GABA(A)受体亚基alpha5和delta表达不足。因为亚下丘在认知功能和癫痫病中均起着作用,所以我们建议在这种结构中改变补品抑制作用会导致在FXS患者中出现的行为缺陷和癫痫活动。该结论与在学习和记忆中牵涉进补GABA(A)抑制作用的证据一致。

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