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N-Glycosylation Regulates Pannexin 2 Localization but Is Not Required for Interacting with Pannexin 1

机译:N-糖基化调节Pannexin 2的本地化但不是与Pannexin 1相互作用所必需的。

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摘要

Pannexins (Panx1, 2, 3) are channel-forming glycoproteins expressed in mammalian tissues. We previously reported that N-glycosylation acts as a regulator of the localization and intermixing of Panx1 and Panx3, but its effects on Panx2 are currently unknown. Panx1 and Panx2 intermixing can regulate channel properties, and both pannexins have been implicated in neuronal cell death after ischemia. Our objectives were to validate the predicted N-glycosylation site of Panx2 and to study the effects of Panx2 glycosylation on localization and its capacity to interact with Panx1. We used site-directed mutagenesis, enzymatic de-glycosylation, cell-surface biotinylation, co-immunoprecipitation, and confocal microscopy. Our results showed that N86 is the only N-glycosylation site of Panx2. Panx2 and the N86Q mutant are predominantly localized to the endoplasmic reticulum (ER) and cis-Golgi matrix with limited cell surface localization was seen only in the presence of Panx1. The Panx2 N86Q mutant is glycosylation-deficient and tends to aggregate in the ER reducing its cell surface trafficking but it can still interact with Panx1. Our study indicates that N-glycosylation may be important for folding and trafficking of Panx2. We found that the un-glycosylated forms of Panx1 and 2 can readily interact, regulating their localization and potentially their channel function in cells where they are co-expressed.
机译:Pannexins(Panx1、2、3)是在哺乳动物组织中表达的通道形成糖蛋白。我们以前曾报道过N-糖基化充当Panx1和Panx3的定位和混合的调节剂,但目前对Panx2的作用尚不清楚。 Panx1和Panx2的混合可以调节通道的性能,并且两种pannexins都参与缺血后神经元细胞的死亡。我们的目标是验证Panx2的预测N-糖基化位点,并研究Panx2糖基化对定位的影响及其与Panx1相互作用的能力。我们使用了定点诱变,酶促去糖基化,细胞表面生物素化,免疫共沉淀和共聚焦显微镜。我们的结果表明,N86是Panx2的唯一N-糖基化位点。 Panx2和N86Q突变体主要定位于内质网(ER),只有在Panx1存在的情况下才能看到细胞表面定位受限的顺式-高尔基体。 Panx2 N86Q突变体是糖基化缺陷的,并且倾向于在ER中聚集,从而减少其细胞表面运输,但仍可以与Panx1相互作用。我们的研究表明,N-糖基化对于Panx2的折叠和运输可能很重要。我们发现Panx1和2的未糖基化形式可以很容易地相互作用,调节它们的定位,并可能在它们共表达的细胞中调节其通道功能。

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