首页> 美国卫生研究院文献>The Journal of Neuroscience >Global Ischemia-Induced Increases in the Gap Junctional Proteins Connexin 32 (Cx32) and Cx36 in Hippocampus and Enhanced Vulnerability of Cx32 Knock-Out Mice
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Global Ischemia-Induced Increases in the Gap Junctional Proteins Connexin 32 (Cx32) and Cx36 in Hippocampus and Enhanced Vulnerability of Cx32 Knock-Out Mice

机译:全球缺血诱导海马间隙连接蛋白连接蛋白32(Cx32)和Cx36的增加和增强的Cx32基因敲除小鼠的脆弱性。

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摘要

Gap junctions are conductive channels that connect the interiors of coupled cells. In the hippocampus, GABA-containing hippocampal interneurons are interconnected by gap junctions, which mediate electrical coupling and synchronous firing and thereby promote inhibitory transmission. The present study was undertaken to examine the hypothesis that the gap junctional proteins connexin 32 (Cx32; expressed by oligodendrocytes, interneurons, or both), Cx36 (expressed by interneurons), and Cx43 (expressed by astrocytes) play a role in defining cell-specific patterns of neuronal death in hippocampus after global ischemia in mice. Global ischemia did not significantly alter Cx32 and Cx36 mRNA expression and slightly increased Cx43 mRNA expression in the vulnerable CA1, as assessed by Northern blot analysis and in situ hybridization. Global ischemia induced a selective increase in Cx32 and Cx36 but not Cx43 protein abundance in CA1 before onset of neuronal death, as assessed by Western blot analysis. The increase in Cx32 and Cx36 expression was intense and specific to parvalbumin-positive inhibitory interneurons of CA1, as assessed by double immunofluorescence. Protein abundance was unchanged in CA3 and dentate gyrus. The finding of increase in connexin protein without increase in mRNA suggests regulation of Cx32 and Cx36 expression at the translational or post-translational level. Cx32(Y/−) null mice exhibited enhanced vulnerability to brief ischemic insults, consistent with a role for Cx32 gap junctions in neuronal survival. These findings suggest that Cx32 and Cx36 gap junctions may contribute to the survival and resistance of GABAergic interneurons, thereby defining cell-specific patterns of global ischemia-induced neuronal death.
机译:间隙连接是连接耦合电池内部的导电通道。在海马中,含GABA的海马中间神经元通过间隙连接相互连接,间隙连接介导电耦合和同步激发,从而促进抑制性传递。本研究旨在检验以下假设:间隙连接蛋白连接蛋白32(Cx32;由少突胶质细胞,中间神经元或两者表达),Cx36(由中间神经元表达)和Cx43(由星形胶质细胞表达)在定义细胞中发挥作用小鼠整体缺血后海马神经元死亡的特定模式。通过Northern印迹分析和原位杂交评估,局部缺血并没有显着改变脆弱CA1中Cx32和Cx36 mRNA的表达,而Cx43 mRNA的表达略有增加。如通过蛋白质印迹分析所评估的,全局缺血在神经元死亡发作之前在CA1中诱导Cx32和Cx36的选择性增加,但不引起Cx43蛋白的丰度增加。通过双重免疫荧光评估,Cx32和Cx36表达的增加强烈且特异于CA1的小白蛋白阳性抑制性中间神经元。 CA3和齿状回中的蛋白质丰度没有变化。连接蛋白的增加而不是mRNA的增加的发现表明在翻译或翻译后水平上Cx32和Cx36表达的调节。 Cx32(Y /-)空小鼠表现出对短暂缺血性损伤的增强的脆弱性,与Cx32间隙连接在神经元存活中的作用一致。这些发现表明,Cx32和Cx36间隙连接可能有助于GABA能神经元的存活和抵抗,从而确定了局部缺血引起的神经元死亡的细胞特异性模式。

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