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来自盐杆菌的 N-连接四糖呈现出一种新颖的修饰方式,即在艾杜糖醛酸的 O-3 位发生硫酸化。

An N-linked tetrasaccharide from Halobacterium salinarum presents a novel modification, sulfation of iduronic acid at the O-3 position.

机构信息

Department of Agricultural Sciences, University of Napoli Federico II, Portici, Italy.

Department of Life Sciences, Ben-Gurion University of the Negev, Beersheva, Israel.

出版信息

Carbohydr Res. 2022 Nov;521:108651. doi: 10.1016/j.carres.2022.108651. Epub 2022 Aug 19.

Abstract

Halobacterium salinarum, a halophilic archaeon that grows at near-saturating salt concentrations, provided the first example of N-glycosylation outside Eukarya. Yet, almost 50 years later, numerous aspects of such post-translational protein processing in this microorganism remain to be determined, including the architecture of glycoprotein-bound glycans. In the present report, nuclear magnetic resonance spectroscopy was used to define a tetrasaccharide N-linked to both archaellins, building blocks of the archaeal swimming device (the archaellum), and the S-layer glycoprotein that comprises the protein shell surrounding the Hbt. salinarum cell as β-GlcA(2S)-(1 → 4)-α-IdoA(3S)-(1 → 4)-β-GlcA-(1 → 4)-β-Glc-Asn. The structure of this tetrasaccharide fills gaps remaining from previous studies, including confirmation of the first known inclusion of iduronic acid in an archaeal N-linked glycan. At the same time, the sulfation of this iduronic acid at the O-3 position has not, to the best of our knowledge, been previously seen. As such, this may represent yet another unique facet of N-glycosylation in Archaea.

摘要

嗜盐古菌盐杆菌能在接近饱和盐浓度的环境中生长,它为真核生物以外的 N-糖基化提供了首个实例。然而,近 50 年后,这种微生物中许多翻译后蛋白质加工的方面仍有待确定,包括糖蛋白结合聚糖的结构。在本报告中,我们使用核磁共振波谱法确定了一个四糖,该四糖与构成细菌游动装置(菌毛)的菌毛蛋白亚基和构成 Hbt. salinarum 细胞蛋白外壳的 S 层糖蛋白都有连接,连接方式为β-GlcA(2S)-(1 → 4)-α-IdoA(3S)-(1 → 4)-β-GlcA-(1 → 4)-β-Glc-Asn。该四糖结构填补了之前研究中留下的空白,包括首次确认在古菌 N-糖基化聚糖中存在岩藻糖。同时,据我们所知,这种岩藻糖在 O-3 位的硫酸化以前从未见过。因此,这可能代表了古菌 N-糖基化的另一个独特方面。

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