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Comprehensive analysis of the N-glycan biosynthetic pathway using bioinformatics to generate UniCorn: A theoretical N-glycan structure database

机译:使用生物信息学生成UniCorn的N-聚糖生物合成途径的综合分析:理论N-聚糖结构数据库

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Glycan structures attached to proteins are comprised of diverse monosaccharide sequences and linkages that are produced from precursor nucleotide-sugars by a series of glycosyltransferases. Databases of these structures are an essential resource for the interpretation of analytical data and the development of bioinformatics tools. However, with no template to predict what structures are possible the human glycan structure databases are incomplete and rely heavily on the curation of published, experimentally determined, glycan structure data. In this work, a library of 45 human glycosyltransferases was used to generate a theoretical database of N-glycan structures comprised of 15 or less monosaccharide residues. Enzyme specificities were sourced from major online databases including Kyoto Encyclopedia of Genes and Genomes (KEGG) Glycan, Consortium for Functional Glycomics (CFG), Carbohydrate-Active enZymes (CAZy), GlycoGene DataBase (GGDB) and BRENDA. Based on the known activities, more than 1.1 million theoretical structures and 4.7 million synthetic reactions were generated and stored in our database called UniCorn. Furthermore, we analyzed the differences between the predicted glycan structures in UniCorn and those contained in UniCarbKB (www.unicarbkb.org), a database which stores experimentally described glycan structures reported in the literature, and demonstrate that UniCorn can be used to aid in the assignment of ambiguous structures whilst also serving as a discovery database. (C) 2016 Elsevier Ltd. All rights reserved.
机译:附着在蛋白质上的聚糖结构由各种单糖序列和键组成,这些序列和键由前体核苷酸糖通过一系列糖基转移酶产生。这些结构的数据库是解释分析数据和开发生物信息学工具的重要资源。但是,由于没有模板来预测可能的结构,因此人类聚糖结构数据库是不完整的,并且严重依赖于已发布的,实验确定的聚糖结构数据的整理。在这项工作中,使用45种人类糖基转移酶文库来生成由15个或更少单糖残基组成的N-聚糖结构的理论数据库。酶的特异性来自主要的在线数据库,包括《京都基因与基因组百科全书》(KEGG)聚糖,功能糖业联盟(CFG),糖活性酶(CAZy),糖基因数据库(GGDB)和BRENDA。根据已知活动,生成了超过110万个理论结构和470万个合成反应,并将其存储在我们称为UniCorn的数据库中。此外,我们分析了UniCorn中预测的聚糖结构与UniCarbKB(www.unicarbkb.org)中包含的糖结构之间的差异。分配歧义结构,同时还充当发现数据库。 (C)2016 Elsevier Ltd.保留所有权利。

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