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UDP-半乳糖(SLC35A2)和UDP-N-乙酰葡糖胺(SLC35A3)转运蛋白与甘露糖苷乙酰葡糖胺基转移酶(Mgats)形成糖基化相关复合物。

UDP-galactose (SLC35A2) and UDP-N-acetylglucosamine (SLC35A3) Transporters Form Glycosylation-related Complexes with Mannoside Acetylglucosaminyltransferases (Mgats).

作者信息

Maszczak-Seneczko Dorota, Sosicka Paulina, Kaczmarek Beata, Majkowski Michał, Luzarowski Marcin, Olczak Teresa, Olczak Mariusz

机构信息

Laboratories of Biochemistry, Faculty of Biotechnology, University of Wroclaw, 50-383 Wroclaw, Poland.

Cytobiochemistry, Faculty of Biotechnology, University of Wroclaw, 50-383 Wroclaw, Poland.

出版信息

J Biol Chem. 2015 Jun 19;290(25):15475-15486. doi: 10.1074/jbc.M115.636670. Epub 2015 May 5.

Abstract

UDP-galactose transporter (UGT; SLC35A2) and UDP-N-acetylglucosamine transporter (NGT; SLC35A3) form heterologous complexes in the Golgi membrane. NGT occurs in close proximity to mannosyl (α-1,6-)-glycoprotein β-1,6-N-acetylglucosaminyltransferase (Mgat5). In this study we analyzed whether NGT and both splice variants of UGT (UGT1 and UGT2) are able to interact with four different mannoside acetylglucosaminyltransferases (Mgat1, Mgat2, Mgat4B, and Mgat5). Using an in situ proximity ligation assay, we found that all examined glycosyltransferases are in the vicinity of these UDP-sugar transporters both at the endogenous level and upon overexpression. This observation was confirmed via the FLIM-FRET approach for both NGT and UGT1 complexes with Mgats. This study reports for the first time close proximity between endogenous nucleotide sugar transporters and glycosyltransferases. We also observed that among all analyzed Mgats, only Mgat4B occurs in close proximity to UGT2, whereas the other three Mgats are more distant from UGT2, and it was only possible to visualize their vicinity using proximity ligation assay. This strongly suggests that the distance between these protein pairs is longer than 10 nm but at the same time shorter than 40 nm. This study adds to the understanding of glycosylation, one of the most important post-translational modifications, which affects the majority of macromolecules. Our research shows that complex formation between nucleotide sugar transporters and glycosyltransferases might be a more common phenomenon than previously thought.

摘要

UDP-半乳糖转运体(UGT;SLC35A2)和UDP-N-乙酰葡糖胺转运体(NGT;SLC35A3)在高尔基体膜中形成异源复合物。NGT与甘露糖基(α-1,6-)-糖蛋白β-1,6-N-乙酰葡糖胺基转移酶(Mgat5)紧密相邻。在本研究中,我们分析了NGT以及UGT的两种剪接变体(UGT1和UGT2)是否能够与四种不同的甘露糖苷乙酰葡糖胺基转移酶(Mgat1、Mgat2、Mgat4B和Mgat5)相互作用。使用原位邻近连接分析,我们发现所有检测的糖基转移酶在内源水平和过表达时都处于这些UDP-糖转运体附近。通过FLIM-FRET方法对NGT和UGT1与Mgats的复合物也证实了这一观察结果。本研究首次报道了内源性核苷酸糖转运体与糖基转移酶之间的紧密邻近关系。我们还观察到,在所有分析的Mgats中,只有Mgat4B与UGT2紧密相邻,而其他三种Mgats与UGT2的距离更远,只有使用邻近连接分析才能观察到它们的邻近关系。这强烈表明这些蛋白质对之间的距离大于10 nm但同时小于40 nm。本研究增进了我们对糖基化这一最重要的翻译后修饰之一的理解,糖基化会影响大多数大分子。我们的研究表明,核苷酸糖转运体与糖基转移酶之间的复合物形成可能是一种比以前认为的更普遍的现象。

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