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Introducing glycomics data into the Semantic Web

机译:将糖组学数据引入语义网

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Background Glycoscience is a research field focusing on complex carbohydrates (otherwise known as glycans)a, which can, for example, serve as “switches” that toggle between different functions of a glycoprotein or glycolipid. Due to the advancement of glycomics technologies that are used to characterize glycan structures, many glycomics databases are now publicly available and provide useful information for glycoscience research. However, these databases have almost no link to other life science databases. Results In order to implement support for the Semantic Web most efficiently for glycomics research, the developers of major glycomics databases agreed on a minimal standard for representing glycan structure and annotation information using RDF (Resource Description Framework). Moreover, all of the participants implemented this standard prototype and generated preliminary RDF versions of their data. To test the utility of the converted data, all of the data sets were uploaded into a Virtuoso triple store, and several SPARQL queries were tested as “proofs-of-concept” to illustrate the utility of the Semantic Web in querying across databases which were originally difficult to implement. Conclusions We were able to successfully retrieve information by linking UniCarbKB, GlycomeDB and JCGGDB in a single SPARQL query to obtain our target information. We also tested queries linking UniProt with GlycoEpitope as well as lectin data with GlycomeDB through PDB. As a result, we have been able to link proteomics data with glycomics data through the implementation of Semantic Web technologies, allowing for more flexible queries across these domains.
机译:背景技术糖科学是专注于复杂碳水化合物(也称为聚糖)a的研究领域,例如,它可以充当在糖蛋白或糖脂的不同功能之间切换的“开关”。由于用于表征聚糖结构的糖组学技术的发展,许多糖组学数据库现已公开提供,并为糖科学研究提供了有用的信息。但是,这些数据库几乎没有与其他生命科学数据库的链接。结果为了为语义学研究最有效地实现对语义Web的支持,主要的血糖学数据库的开发人员就使用RDF(资源描述框架)表示聚糖结构和注释信息的最低标准达成了一致。此外,所有参与者都实现了此标准原型并生成了其数据的RDF初步版本。为了测试转换后数据的实用性,将所有数据集上载到Virtuoso三元存储中,并测试了几个SPARQL查询作为“概念验证”,以说明语义Web在跨数据库查询中的实用性。原本难以实施。结论我们能够通过在单个SPARQL查询中链接UniCarbKB,GlycomeDB和JCGGDB来成功检索信息,以获得我们的目标信息。我们还测试了将UniProt与GlycoEpitope链接的查询,以及通过PDB与GlycomeDB链接的凝集素数据。结果,我们已经能够通过实施语义Web技术将蛋白质组学数据与糖组学数据链接起来,从而允许跨这些域进行更灵活的查询。

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