Egan Timothy James, Acuña Mario A, Zenobi-Wong Marcy, Zeilhofer Hanns Ulrich, Urech David
ETH Zürich, Zurich, Switzerland
Institute of Pharmacology & Toxicology, University of Zurich, Zurich, Switzerland.
Biosci Rep. 2016 Oct;36(5). doi: 10.1042/BSR20160149. Epub 2016 Aug 31.
Determining the functional significance of post-translational modifications advances our understanding of many broadly-expressed proteins, and particularly ion channels. The enzymes that catalyze these modifications are often expressed in a cell-type specific manner, resulting in considerable structural diversity among post-translationally modified proteins that are expressed across a variety of cell types. TRP channels exhibit notably variable behavior between cell types in vitro and in vivo , and they are frequently modified with N-glycans that contribute to protein function. TRPA1 possesses two putative N-linked glycosylation sites at N747 and N753 that have not yet been studied in detail. Here, we show that both of these sites can be modified with an N-glycan and that the glycan at position N747 modulates agonist-sensitivity of TRPA1 in vitro Additionally, we found that N-glycosylation also modulates cooperative effects of temperature and the agonist cinnamaldehyde on TRPA1 channel activation. Collectively, these findings suggest a dynamic role played by the N-glycosylation of human TRPA1. They also provide further evidence of the versatility of N-glycans and will assist in efforts to fully understand the complex regulation of TRPA1 activity.
确定翻译后修饰的功能意义有助于我们深入了解许多广泛表达的蛋白质,尤其是离子通道。催化这些修饰的酶通常以细胞类型特异性的方式表达,导致在多种细胞类型中表达的翻译后修饰蛋白之间存在相当大的结构多样性。TRP通道在体外和体内的细胞类型之间表现出显著的可变行为,并且它们经常被N-聚糖修饰,这有助于蛋白质功能。TRPA1在N747和N753处有两个假定的N-连接糖基化位点,尚未进行详细研究。在这里,我们表明这两个位点都可以被N-聚糖修饰,并且N747位置的聚糖在体外调节TRPA1的激动剂敏感性。此外,我们发现N-糖基化还调节温度和激动剂肉桂醛对TRPA1通道激活的协同作用。总的来说,这些发现表明人TRPA1的N-糖基化发挥了动态作用。它们还提供了N-聚糖多功能性的进一步证据,并将有助于全面了解TRPA1活性的复杂调节。