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代谢途径数据库中的知识表示。

Knowledge representation in metabolic pathway databases.

作者信息

Stobbe Miranda D, Jansen Gerbert A, Moerland Perry D, van Kampen Antoine H C

机构信息

Bioinformatics Laboratory, Academic Medical Center, PO Box 22700, 1100 DE Amsterdam, the Netherlands. Tel.: ++31 20 5667096;

出版信息

Brief Bioinform. 2014 May;15(3):455-70. doi: 10.1093/bib/bbs060. Epub 2012 Nov 30.

Abstract

The accurate representation of all aspects of a metabolic network in a structured format, such that it can be used for a wide variety of computational analyses, is a challenge faced by a growing number of researchers. Analysis of five major metabolic pathway databases reveals that each database has made widely different choices to address this challenge, including how to deal with knowledge that is uncertain or missing. In concise overviews, we show how concepts such as compartments, enzymatic complexes and the direction of reactions are represented in each database. Importantly, also concepts which a database does not represent are described. Which aspects of the metabolic network need to be available in a structured format and to what detail differs per application. For example, for in silico phenotype prediction, a detailed representation of gene-protein-reaction relations and the compartmentalization of the network is essential. Our analysis also shows that current databases are still limited in capturing all details of the biology of the metabolic network, further illustrated with a detailed analysis of three metabolic processes. Finally, we conclude that the conceptual differences between the databases, which make knowledge exchange and integration a challenge, have not been resolved, so far, by the exchange formats in which knowledge representation is standardized.

摘要

以结构化格式准确呈现代谢网络的各个方面,使其可用于各种计算分析,这是越来越多研究人员面临的挑战。对五个主要代谢途径数据库的分析表明,每个数据库在应对这一挑战时做出了大不相同的选择,包括如何处理不确定或缺失的知识。在简要概述中,我们展示了诸如区室、酶复合物和反应方向等概念在每个数据库中的表示方式。重要的是,还描述了数据库未表示的概念。代谢网络的哪些方面需要以结构化格式提供以及详细程度因应用而异。例如,对于计算机模拟表型预测,基因 - 蛋白质 - 反应关系的详细表示和网络的区室化至关重要。我们的分析还表明,当前数据库在捕捉代谢网络生物学的所有细节方面仍然有限,通过对三个代谢过程的详细分析进一步说明了这一点。最后,我们得出结论,数据库之间的概念差异使得知识交换和整合成为一项挑战,迄今为止,知识表示标准化的交换格式尚未解决这一问题。

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