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Expression and functions of neuronal gap junctions

机译:神经间隙连接的表达和功能

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Gap junctions are channel-forming structures in contacting plasma membranes that allow direct metabolic and electrical communication between almost all cell types in the mammalian brain. At least 20 connexin genes and 3 pannexin genes probably code for gap junction proteins in mice and humans. Gap junctions between murine neurons (also known as electrical synapses) can be composed of connexin 36, connexin 45 or connexin 57 proteins, depending on the type of neuron. Furthermore, pannexin 1 and 2 are likely to form electrical synapses. Here, we discuss the roles of connexin and pannexin genes in the formation of neuronal gap junctions, and evaluate recent functional analyses of electrical synapses that became possible through the characterization of mouse mutants that show targeted defects in connexin genes.
机译:间隙连接是质膜接触中的通道形成结构,可在哺乳动物脑中几乎所有细胞类型之间进行直接代谢和电通信。小鼠和人类中至少有20个连接蛋白基因和3个泛新基因可能编码间隙连接蛋白。鼠神经元之间的间隙连接(也称为电突触)可以由连接蛋白36,连接蛋白45或连接蛋白57蛋白组成,具体取决于神经元的类型。此外,pannexin 1和2可能会形成电突触。在这里,我们讨论连接蛋白和pannexin基因在神经元间隙连接的形成中的作用,并评估电突触的最新功能分析,该功能分析通过表征连接蛋白基因中靶向缺陷的小鼠突变体的表征成为可能。

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