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噬藻体 PBCV-1 蛋白 A064R 具有合成其衣壳蛋白 N-连接聚糖所需的三种转移酶活性。

Chlorovirus PBCV-1 protein A064R has three of the transferase activities necessary to synthesize its capsid protein N-linked glycans.

机构信息

Department of Chemical Sciences, University of Napoli Federico II, 80126 Napoli, Italy.

Department of Agricultural Sciences, University of Napoli Federico II, 80055 Portici NA, Italy.

出版信息

Proc Natl Acad Sci U S A. 2020 Nov 17;117(46):28735-28742. doi: 10.1073/pnas.2016626117. Epub 2020 Nov 2.

Abstract

chlorella virus-1 (PBCV-1) is a large double-stranded DNA (dsDNA) virus that infects the unicellular green alga NC64A. Unlike many other viruses, PBCV-1 encodes most, if not all, of the enzymes involved in the synthesis of the glycans attached to its major capsid protein. Importantly, these glycans differ from those reported from the three domains of life in terms of structure and asparagine location in the sequon of the protein. Previous data collected from 20 PBCV-1 spontaneous mutants (or antigenic variants) suggested that the gene encodes a glycosyltransferase (GT) with three domains, each with a different function. Here, we demonstrate that: domain 1 is a β-l-rhamnosyltransferase; domain 2 is an α-l-rhamnosyltransferase resembling only bacterial proteins of unknown function, and domain 3 is a methyltransferase that methylates the C-2 hydroxyl group of the terminal α-l-rhamnose (Rha) unit. We also establish that methylation of the C-3 hydroxyl group of the terminal α-l-Rha is achieved by another virus-encoded protein A061L, which requires an O-2 methylated substrate. This study, thus, identifies two of the glycosyltransferase activities involved in the synthesis of the -glycan of the viral major capsid protein in PBCV-1 and establishes that a single protein A064R possesses the three activities needed to synthetize the 2-OMe-α-l-Rha-(1→2)-β-l-Rha fragment. Remarkably, this fragment can be attached to any xylose unit.

摘要

绿藻病毒-1 (PBCV-1) 是一种感染单细胞绿藻 NC64A 的大型双链 DNA (dsDNA) 病毒。与许多其他病毒不同,PBCV-1 编码了与其主要衣壳蛋白相连的聚糖合成中涉及的大多数(如果不是全部)酶。重要的是,这些聚糖在结构和蛋白质序列中的天冬酰胺位置方面与生命的三个领域报告的聚糖不同。先前从 20 个 PBCV-1 自发突变体(或抗原变异体)收集的数据表明, 基因编码具有三个结构域的糖基转移酶 (GT),每个结构域具有不同的功能。在这里,我们证明:结构域 1 是β-l-鼠李糖基转移酶;结构域 2 是类似于未知功能的细菌蛋白的α-l-鼠李糖基转移酶,而结构域 3 是甲基转移酶,可甲基化末端α-l-鼠李糖 (Rha) 单元的 C-2 羟基。我们还确定了末端α-l-Rha 的 C-3 羟基的甲基化是由另一种病毒编码的蛋白 A061L 完成的,该蛋白需要 O-2 甲基化的底物。因此,这项研究鉴定了参与 PBCV-1 病毒主要衣壳蛋白-聚糖合成的两种糖基转移酶活性,并确定了单个蛋白 A064R 具有合成 2-OMe-α-l-Rha-(1→2)-β-l-Rha 片段所需的三种活性。值得注意的是,该片段可以连接到任何木糖单元上。

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