首页> 外文期刊>The European Journal of Neuroscience >Neuronal connexin36 association with zonula occludens-1 protein (ZO-1) in mouse brain and interaction with the first PDZ domain of ZO-1.
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Neuronal connexin36 association with zonula occludens-1 protein (ZO-1) in mouse brain and interaction with the first PDZ domain of ZO-1.

机译:神经元连接蛋白36与小鼠大脑中的小带闭合蛋白1蛋白(ZO-1)关联,并与ZO-1的第一个PDZ域相互作用。

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摘要

Among the 20 members in the connexin family of gap junction proteins, only connexin36 (Cx36) is firmly established to be expressed in neurons and to form electrical synapses at widely distributed interneuronal gap junctions in mammalian brain. Several connexins have recently been reported to interact with the PDZ domain-containing protein zonula occludens-1 (ZO-1), which was originally considered to be associated only with tight junctions, but has recently been reported to associate with other structures including gap junctions in various cell types. Based on the presence of sequence corresponding to a putative PDZ binding motif in Cx36, we investigated anatomical relationships and molecular association of Cx36 with ZO-1. By immunofluorescence, punctate Cx36/ZO-1 colocalization was observed throughout the central nervous system of wild-type mice, whereas labelling for Cx36 was absent in Cx36 knockout mice, confirming the specificity of the anti-Cx36 antibodies employed. By freeze-fracture replica immunogold labelling, Cx36 and ZO-1 in brain were found colocalized within individual ultrastructurally identified gap junction plaques, although some plaques contained only Cx36 whereas others contained only ZO-1. Cx36 from mouse brain and Cx36-transfected HeLa cells was found to coimmunoprecipitate with ZO-1. Unlike other connexins that bind the second of the three PDZ domains in ZO-1, glutathione S-transferase-PDZ pull-down and mutational analyses indicated Cx36 interaction with the first PDZ domain of ZO-1, which required at most the presence of the four c-terminus amino acids of Cx36. These results demonstrating a Cx36/ZO-1 association suggest a regulatory and/or scaffolding role of ZO-1 at gap junctions that form electrical synapses between neurons in mammalian brain.
机译:在缝隙连接蛋白的连接蛋白家族的20个成员中,只有连接蛋白36(Cx36)被牢固地确立为在神经元中表达并在哺乳动物脑中广泛分布的神经元间隙连接处形成电突触。最近有几种连接蛋白与含PDZ结构域的蛋白小带闭合蛋白1(ZO-1)相互作用,该蛋白最初被认为仅与紧密连接有关,但最近有报道与包括缝隙连接在内的其他结构相关在各种细胞类型中。基于在Cx36中存在与推定的PDZ结合基序相对应的序列,我们研究了Cx36与ZO-1的解剖关系和分子缔合。通过免疫荧光,在整个野生型小鼠的中枢神经系统中观察到点状Cx36 / ZO-1共定位,而在Cx36基因敲除小鼠中不存在Cx36的标记,这证实了所用抗Cx36抗体的特异性。通过冷冻断裂复制品免疫金标记,发现脑中的Cx36和ZO-1共定位在单个超微结构识别的间隙连接斑块中,尽管某些斑块仅包含Cx36,而其他斑块仅包含ZO-1。发现来自小鼠脑的Cx36和Cx36转染的HeLa细胞与ZO-1共免疫沉淀。与结合ZO-1中三个PDZ结构域中第二个的其他连接蛋白不同,谷胱甘肽S-转移酶-PDZ下拉和突变分析表明Cx36与ZO-1的第一个PDZ结构域相互作用,这最多需要存在ZO-1。 Cx36的四个c末端氨基酸。这些结果表明Cx36 / ZO-1的关联表明ZO-1在间隙连接处的调节和/或支架作用,该间隙连接在哺乳动物脑中神经元之间形成电突触。

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