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水痘带状疱疹病毒、人巨细胞病毒和爱泼斯坦-巴尔病毒O-糖基化的全球图谱

Global Mapping of O-Glycosylation of Varicella Zoster Virus, Human Cytomegalovirus, and Epstein-Barr Virus.

作者信息

Bagdonaite Ieva, Nordén Rickard, Joshi Hiren J, King Sarah L, Vakhrushev Sergey Y, Olofsson Sigvard, Wandall Hans H

机构信息

From the Copenhagen Center for Glycomics, Department of Cellular and Molecular Medicine, University of Copenhagen, 2200 Copenhagen, Denmark and.

the Department of Infectious Diseases, Institute of Biomedicine, University of Gothenburg, 413 45 Gothenburg, Sweden.

出版信息

J Biol Chem. 2016 Jun 3;291(23):12014-28. doi: 10.1074/jbc.M116.721746. Epub 2016 Apr 15.

Abstract

Herpesviruses are among the most complex and widespread viruses, infection and propagation of which depend on envelope proteins. These proteins serve as mediators of cell entry as well as modulators of the immune response and are attractive vaccine targets. Although envelope proteins are known to carry glycans, little is known about the distribution, nature, and functions of these modifications. This is particularly true for O-glycans; thus we have recently developed a "bottom up" mass spectrometry-based technique for mapping O-glycosylation sites on herpes simplex virus type 1. We found wide distribution of O-glycans on herpes simplex virus type 1 glycoproteins and demonstrated that elongated O-glycans were essential for the propagation of the virus. Here, we applied our proteome-wide discovery platform for mapping O-glycosites on representative and clinically significant members of the herpesvirus family: varicella zoster virus, human cytomegalovirus, and Epstein-Barr virus. We identified a large number of O-glycosites distributed on most envelope proteins in all viruses and further demonstrated conserved patterns of O-glycans on distinct homologous proteins. Because glycosylation is highly dependent on the host cell, we tested varicella zoster virus-infected cell lysates and clinically isolated virus and found evidence of consistent O-glycosites. These results present a comprehensive view of herpesvirus O-glycosylation and point to the widespread occurrence of O-glycans in regions of envelope proteins important for virus entry, formation, and recognition by the host immune system. This knowledge enables dissection of specific functional roles of individual glycosites and, moreover, provides a framework for design of glycoprotein vaccines with representative glycosylation.

摘要

疱疹病毒是最复杂且分布最广泛的病毒之一,其感染和传播依赖于包膜蛋白。这些蛋白充当细胞进入的介质以及免疫反应的调节剂,是有吸引力的疫苗靶点。尽管已知包膜蛋白携带聚糖,但对于这些修饰的分布、性质和功能却知之甚少。对于O-聚糖来说尤其如此;因此,我们最近开发了一种基于质谱的“自下而上”技术,用于绘制1型单纯疱疹病毒上的O-糖基化位点。我们发现O-聚糖在1型单纯疱疹病毒糖蛋白上广泛分布,并证明延长的O-聚糖对病毒的传播至关重要。在这里,我们应用我们的全蛋白质组发现平台,来绘制疱疹病毒家族中有代表性且具有临床意义的成员——水痘带状疱疹病毒、人巨细胞病毒和爱泼斯坦-巴尔病毒上的O-糖基化位点。我们在所有病毒的大多数包膜蛋白上鉴定出大量O-糖基化位点,并进一步证明了不同同源蛋白上O-聚糖的保守模式。由于糖基化高度依赖于宿主细胞,我们检测了水痘带状疱疹病毒感染的细胞裂解物和临床分离的病毒,发现了一致的O-糖基化位点的证据。这些结果全面展示了疱疹病毒的O-糖基化情况,并指出O-聚糖在包膜蛋白中对病毒进入、形成以及宿主免疫系统识别很重要的区域广泛存在。这些知识有助于剖析单个糖基化位点的特定功能作用,此外,还为设计具有代表性糖基化的糖蛋白疫苗提供了框架。

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