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首页> 外文期刊>Journal of Cell Science >Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteins
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Pannexin 1 and pannexin 3 are glycoproteins that exhibit many distinct characteristics from the connexin family of gap junction proteins

机译:Pannexin 1和Pannexin 3是糖蛋白,表现出间隙连接蛋白的连接蛋白家族许多不同的特征

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摘要

Pannexins are mammalian orthologs of the invertebrate gap junction proteins innexins and thus have been proposed to play a role in gap junctional intercellular communication. Localization of exogenously expressed pannexin 1 (Panx1) and pannexin 3 (Panx3), together with pharmacological studies, revealed a cell surface distribution profile and life cycle dynamics that were distinct from connexin 43 (Cx43, encoded by Gja1). Furthermore, N-glycosidase treatment showed that both Panx1 (similar to 41-48 kD species) and Panx3 (similar to 43 kD) were glycosylated, whereas N-linked glycosylation-defective mutants exhibited a decreased ability to be transported to the cell surface. Tissue surveys revealed the expression of Panx1 in several murine tissues - including in cartilage, skin, spleen and brain - whereas Panx3 expression was prevalent in skin and cartilage with a second higher-molecular-weight species present in a broad range of tissues. Tissue-specific localization patterns of Panx1 and Panx3 ranging from distinct cell surface clusters to intracellular profiles were revealed by immunostaining of skin and spleen sections. Finally, functional assays in cultured cells transiently expressing Panx1 and Panx3 were incapable of forming intercellular channels, but assembled into functional cell surface channels. Collectively, these studies show that Panx1 and Panx3 have many characteristics that are distinct from Cx43 and that these proteins probably play an important biological role as single membrane channels.
机译:Pannexins是无脊椎动物间隙连接蛋白innexins的哺乳动物直系同源物,因此已被提议在间隙连接细胞间通讯中发挥作用。外源表达的pannexin 1(Panx1)和pannexin 3(Panx3)的定位,以及药理研究,揭示了与连接蛋白43(Cx43,由Gja1编码)不同的细胞表面分布特征和生命周期动态。此外,N-糖苷酶处理显示Panx1(类似于41-48 kD物种)和Panx3(类似于43 kD)都被糖基化,而N-连接的糖基化缺陷型突变体表现出降低的转运至细胞表面的能力。组织调查显示Panx1在几种鼠类组织中的表达-包括在软骨,皮肤,脾脏和脑中-而Panx3的表达在皮肤和软骨中普遍存在,第二种较高分子量的物种存在于广泛的组织中。 Panx1和Panx3的组织特异性定位模式​​从不同的细胞表面簇到细胞内的分布范围通过皮肤和脾脏切片的免疫染色得以揭示。最后,在瞬时表达Panx1和Panx3的培养细胞中的功能测定不能形成细胞间通道,但组装成功能性细胞表面通道。总体而言,这些研究表明Panx1和Panx3具有许多不同于Cx43的特征,并且这些蛋白质可能作为单膜通道发挥重要的生物学作用。

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