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Diverse Subcellular Distribution Profiles of Pannexin1 and Pannexin3

机译:Pannexin1和Pannexin3的多样的亚细胞分布图

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Pannexins have been proposed to play a role in gap junctional intercellular communication and as single-membrane channels, although many of their molecular characteristics differ from connexins. Localization of untagged Panx1 and Panx3 exogenously expressed in five cultured cell lines revealed a cell surface distribution profile with limited evidence of cell surface clustering and variable levels of intracellular pools. However, N-glycosylation–defective mutants of pannexins exhibited a more prominent intracellular distribution with decreased cell surface labeling, suggesting an important role for pannexin glycosylation in trafficking. Similar to wild-type pannexins, the glycosylation-defective mutants failed to noticeably transfer microinjected fluorescent dyes to neighboring cells, suggesting that few, or no functional intercellular channels were formed. Finally, varied distribution patterns of endogenous Panx1 and Panx3 were observed in cells of osteoblast origin and Madin-Darby canine kidney cells. Collectively, diverse expression and distribution profiles of Panx1 and Panx3 suggest that they may have multiple cellular functions.
机译:已建议将Pannexins在间隙连接细胞间通讯中用作单膜通道,尽管它们的许多分子特性与连接蛋白不同。未标记的Panx1和Panx3在5种培养的细胞系中外源表达的定位揭示了细胞表面分布特征,有限的细胞表面聚集证据和可变的细胞内池水平。但是,pannexin的N-糖基化缺陷突变体表现出更突出的细胞内分布,且细胞表面标记减少,表明pannexin糖基化在贩运中具有重要作用。与野生型pannexins相似,糖基化缺陷型突变体未能将微注射的荧光染料显着转移至邻近细胞,这表明很少或没有形成功能性细胞间通道。最后,在成骨细胞来源的细胞和Madin-Darby犬肾细胞中观察到内源性Panx1和Panx3的不同分布模式。总的来说,Panx1和Panx3的不同表达和分布谱表明它们可能具有多种细胞功能。

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