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生物物理方法解决藻类病毒复杂糖萼结构

Biophysical Approaches to Solve the Structures of the Complex Glycan Shield of Chloroviruses.

机构信息

Department of Agricultural Sciences, University of Napoli, Portici, NA, Italy.

Department of Biology, Nebraska Wesleyan University, Lincoln, NE, USA.

出版信息

Adv Exp Med Biol. 2018;1104:237-257. doi: 10.1007/978-981-13-2158-0_12.

Abstract

The capsid of Paramecium bursaria chlorella virus (PBCV-1) contains a heavily glycosylated major capsid protein, Vp54. The capsid protein contains four glycans, each N-linked to Asn. The glycan structures are unusual in many aspects: (1) they are attached by a β-glucose linkage, which is rare in nature; (2) they are highly branched and consist of 8-10 neutral monosaccharides; (3) all four glycoforms contain a dimethylated rhamnose as the capping residue of the main chain, a hyper-branched fucose residue and two rhamnose residues ''with opposite absolute configurations; (4) the four glycoforms differ by the nonstoichiometric presence of two monosaccharides, L-arabinose and D-mannose ; (5) the N-glycans from all of the chloroviruses have a strictly conserved core structure; and (6) these glycans do not resemble any structures previously reported in the three domains of life.The structures of these N-glycoforms remained elusive for years because initial attempts to solve their structures used tools developed for eukaryotic-like systems, which we now know are not suitable for this noncanonical glycosylation pattern. This chapter summarizes the methods used to solve the chlorovirus complex glycan structures with the hope that these methodologies can be used by scientists facing similar problems.

摘要

巴贝斯虫 Chlorella 病毒 (PBCV-1) 的衣壳含有一种高度糖基化的主要衣壳蛋白 Vp54。衣壳蛋白包含四个聚糖,每个都通过 Asn 连接到 N 上。聚糖结构在许多方面都很不寻常:(1) 它们通过 β-葡萄糖键连接,这在自然界中很少见;(2) 它们高度分支,由 8-10 个中性单糖组成;(3) 所有四种糖型都含有一个作为主链封端残基的二甲化鼠李糖、一个超支化岩藻糖残基和两个具有相反绝对构型的鼠李糖残基;(4) 这四种糖型通过两种单糖 L-阿拉伯糖和 D-甘露糖的非化学计量存在而有所不同;(5) 所有的噬藻体病毒的 N-聚糖都具有严格保守的核心结构;(6) 这些聚糖与生命的三个领域中以前报道的任何结构都不相似。这些 N-聚糖型的结构多年来一直难以捉摸,因为最初尝试解决它们的结构使用了为真核样系统开发的工具,我们现在知道这些工具不适合这种非典型的糖基化模式。本章总结了解决噬藻体复杂糖结构的方法,希望这些方法可以被面临类似问题的科学家所使用。

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