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Diverse post-translational modifications of the pannexin family of channel-forming proteins

机译:通道形成蛋白pannexin家族的多种翻译后修饰

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摘要

The pannexin family of channel-forming proteins is composed of 3 distinct but related members called Panx1, Panx2, and Panx3. Pannexins have been implicated in many physiological processes as well as pathological conditions, primarily through their function as ATP release channels. However, it is currently unclear if all pannexins are subject to similar or different post-translational modifications as most studies have focused primarily on Panx1. Using in vitro biochemical assays performed on ectopically expressed pannexins in HEK-293T cells, we confirmed that all 3 pannexins are N-glycosylated to different degrees, but they are not modified by sialylation or O-linked glycosylation in a manner that changes their apparent molecular weight. Using cell-free caspase assays, we also discovered that similar to Panx1, the C-terminus of Panx2 is a substrate for caspase cleavage. Panx3, on the other hand, is not subject to caspase digestion but an in vitro biotin switch assay revealed that it was S-nitrosylated by nitric oxide donors. Taken together, our findings uncover novel and diverse pannexin post-translational modifications suggesting that they may be differentially regulated for distinct or overlapping cellular and physiological functions.
机译:通道形成蛋白的pannexin家族由称为Panx1,Panx2和Panx3的3个不同但相关的成员组成。 Pannexins主要通过其作为ATP释放通道的功能参与了许多生理过程和病理状况。但是,目前尚不清楚是否所有的pannexins都经历了相似或不同的翻译后修饰,因为大多数研究主要集中在Panx1上。通过对HEK-293T细胞中异位表达的pannexins进行的体外生化分析,我们证实了所有3种pannexins均在不同程度上被N-糖基化,但它们并未被唾液酸化或O-联糖基化修饰,从而改变了它们的表观分子重量。使用无细胞的半胱天冬酶测定法,我们还发现与Panx1相似,Panx2的C端是caspase裂解的底物。另一方面,Panx3不受胱天蛋白酶消化,但体外生物素转换试验表明,它被一氧化氮供体S-亚硝化。综上所述,我们的发现揭示了新颖而多样的泛新翻译后修饰,表明它们可能针对不同或重叠的细胞和生理功能受到不同的调节。

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