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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >MicroRNA-92 modulates K(+) Cl(-) co-transporter KCC2 expression in cerebellar granule neurons
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MicroRNA-92 modulates K(+) Cl(-) co-transporter KCC2 expression in cerebellar granule neurons

机译:MicroRNA-92调节小脑颗粒神经元中的K(+)Cl(-)共转运蛋白KCC2表达

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摘要

MicroRNAs have been associated to fine-tuning spatial and temporal control of gene expression during neuronal development. The neuronal Cl(-) extruding, K(+)Cl(-) co-transporter 2 (KCC2) is known to play an important role in neuronal Cl(-) homeostasis and in determining the physiological response to activation of anion selective GABA receptors. Here we show that microRNA-92 is developmentally down-regulated during maturation of rat cerebellar granule neurons (CGNs) in vitro. Computational predictions suggest several high-ranking targets for microRNA-92 including the KCC2 gene. Consistently, the KCC2 protein levels were up-regulated in mature CGN in vitro and a functional association between microRNA-92 and KCC2 3' untranslated region was established using luciferase assays. The generation of an inward directed Cl(-) electrochemical gradient, necessary for the hyperpolarizing effect of GABA, requires robust KCC2 expression in several neuronal types. Here we show that lentiviral-mediated microRNA-92 over-expression reduced KCC2 protein levels and positively shifted reversal potential of GABA induced Cl(-) currents in CGNs. In addition KCC2 re-expression reversed microRNA-92 electrophysiological phe-notype. Consistently microRNA-92 inhibition induced both an increase of the level of KCC2 and a negative shift in GABA reversal potential. These findings introduce a new player in the developmental change of GABA from depolarization to hyperpolarization.
机译:MicroRNA与神经元发育过程中基因表达的时空控制微调有关。已知神经元Cl(-)挤出,K(+)Cl(-)共转运蛋白2(KCC2)在神经元Cl(-)稳态和决定对阴离子选择性GABA受体活化的生理反应中起重要作用。在这里,我们显示microRNA-92在大鼠小脑颗粒神经元(CGNs)体外成熟过程中被发育性下调。计算预测表明,microRNA-92的多个高级靶标包括KCC2基因。一致地,在体外成熟的CGN中,KCC2蛋白水平上调,并且使用荧光素酶测定法建立了microRNA-92和KCC2 3'非翻译区之间的功能关联。 GABA的超极化作用所必需的向内定向的Cl(-)电化学梯度的生成需要在几种神经元类型中稳定的KCC2表达。在这里,我们显示慢病毒介导的microRNA-92过表达降低了KCC2蛋白水平,并正向转移了CABA中GABA诱导的Cl(-)电流的逆转潜力。此外,KCC2重新表达逆转了microRNA-92电生理表型。一致地,microRNA-92抑制既诱导KCC2水平升高,又诱导GABA逆转潜能发生负向变化。这些发现为GABA从去极化到超极化的发展变化引入了新的参与者。

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