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巨型拟菌病毒R707编码一种糖原蛋白类似物,其通过α-和β-糖苷键聚合葡萄糖。

Giant mimivirus R707 encodes a glycogenin paralogue polymerizing glucose through α- and β-glycosidic linkages.

作者信息

Rommel Anna J, Hülsmeier Andreas J, Jurt Simon, Hennet Thierry

机构信息

Institute of Physiology, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.

Institute of Organic Chemistry, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.

出版信息

Biochem J. 2016 Oct 15;473(20):3451-3462. doi: 10.1042/BCJ20160280. Epub 2016 Jul 18.

DOI:10.1042/BCJ20160280
PMID:27433018
Abstract

Acanthamoeba polyphaga mimivirus is a giant virus encoding 1262 genes among which many were previously thought to be exclusive to cellular life. For example, mimivirus genes encode enzymes involved in the biosynthesis of nucleotide sugars and putative glycosyltransferases. We identified in mimivirus a glycogenin-1 homologous gene encoded by the open reading frame R707. The R707 protein was found to be active as a polymerizing glucosyltransferase enzyme. Like glycogenin-1, R707 activity was divalent-metal-ion-dependent and relied on an intact DXD motif. In contrast with glycogenin-1, R707 was, however, not self-glucosylating. Interestingly, the product of R707 catalysis featured α1-6, β1-6 and α1-4 glycosidic linkages. Mimivirus R707 is the first reported glycosyltransferase able to catalyse the formation of both α and β linkages. Mimivirus-encoded glycans play a role in the infection of host amoebae. Co-infection of Acanthamoeba with mimivirus and amylose and chitin hydrolysate reduced the number of infected amoebae, thus supporting the importance of polysaccharide chains in the uptake of mimivirus by amoebae. The identification of a glycosyltransferase capable of forming α and β linkages underlines the peculiarity of mimivirus and enforces the concept of a host-independent glycosylation machinery in mimivirus.

摘要

多食棘阿米巴米米病毒是一种巨型病毒,编码1262个基因,其中许多基因以前被认为是细胞生命所特有的。例如,米米病毒基因编码参与核苷酸糖生物合成的酶和假定的糖基转移酶。我们在米米病毒中鉴定出一个由开放阅读框R707编码的糖原蛋白-1同源基因。发现R707蛋白作为一种聚合葡萄糖基转移酶具有活性。与糖原蛋白-1一样,R707的活性依赖于二价金属离子,并依赖于完整的DXD基序。然而,与糖原蛋白-1不同的是,R707不能自我葡萄糖基化。有趣的是,R707催化的产物具有α1-6、β1-6和α1-4糖苷键。米米病毒R707是第一个被报道的能够催化α和β键形成的糖基转移酶。米米病毒编码的聚糖在宿主变形虫的感染中起作用。用米米病毒与直链淀粉和几丁质水解产物共同感染棘阿米巴,可减少被感染变形虫的数量,从而支持了多糖链在变形虫摄取米米病毒中的重要性。能够形成α和β键的糖基转移酶的鉴定突出了米米病毒的独特性,并强化了米米病毒中存在独立于宿主的糖基化机制这一概念。

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Giant mimivirus R707 encodes a glycogenin paralogue polymerizing glucose through α- and β-glycosidic linkages.巨型拟菌病毒R707编码一种糖原蛋白类似物,其通过α-和β-糖苷键聚合葡萄糖。
Biochem J. 2016 Oct 15;473(20):3451-3462. doi: 10.1042/BCJ20160280. Epub 2016 Jul 18.
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The -glycan structures of the antigenic variants of chlorovirus PBCV-1 major capsid protein help to identify the virus-encoded glycosyltransferases.
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The rare sugar -acetylated viosamine is a major component of Mimivirus fibers.稀有糖乙酰化维索胺是米米病毒纤维的主要成分。
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