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布伦达(BRENDA)在2015年:成立25周年之际的激动人心的发展。

BRENDA in 2015: exciting developments in its 25th year of existence.

作者信息

Chang Antje, Schomburg Ida, Placzek Sandra, Jeske Lisa, Ulbrich Marcus, Xiao Mei, Sensen Christoph W, Schomburg Dietmar

机构信息

Department of Bioinformatics and Biochemistry, Technische Universität Braunschweig, Langer Kamp 19 B, D-38106 Braunschweig, Germany.

Department of Biochemistry & Molecular Biology, Faculty of Medicine, University of Calgary, 3330 Hospital Drive N.W., Calgary, Alberta T2N 4N1, Canada.

出版信息

Nucleic Acids Res. 2015 Jan;43(Database issue):D439-46. doi: 10.1093/nar/gku1068. Epub 2014 Nov 5.

Abstract

The BRENDA enzyme information system (http://www.brenda-enzymes.org/) has developed into an elaborate system of enzyme and enzyme-ligand information obtained from different sources, combined with flexible query systems and evaluation tools. The information is obtained by manual extraction from primary literature, text and data mining, data integration, and prediction algorithms. Approximately 300 million data include enzyme function and molecular data from more than 30,000 organisms. The manually derived core contains 3 million data from 77,000 enzymes annotated from 135,000 literature references. Each entry is connected to the literature reference and the source organism. They are complemented by information on occurrence, enzyme/disease relationships from text mining, sequences and 3D structures from other databases, and predicted enzyme location and genome annotation. Functional and structural data of more than 190,000 enzyme ligands are stored in BRENDA. New features improving the functionality and analysis tools were implemented. The human anatomy atlas CAVEman is linked to the BRENDA Tissue Ontology terms providing a connection between anatomical and functional enzyme data. Word Maps for enzymes obtained from PubMed abstracts highlight application and scientific relevance of enzymes. The EnzymeDetector genome annotation tool and the reaction database BKM-react including reactions from BRENDA, KEGG and MetaCyc were improved. The website was redesigned providing new query options.

摘要

布伦达酶信息系统(http://www.brenda - enzymes.org/)已发展成为一个精心构建的系统,它整合了从不同来源获取的酶和酶 - 配体信息,并配备了灵活的查询系统和评估工具。这些信息通过从原始文献中手动提取、文本和数据挖掘、数据整合以及预测算法来获取。大约3亿条数据涵盖了来自3万多种生物的酶功能和分子数据。人工推导的核心数据包含来自7.7万种酶的300万条数据,这些数据由13.5万篇文献注释而来。每个条目都与文献参考和来源生物相关联。此外,还补充了关于酶的出现情况、通过文本挖掘得到的酶与疾病的关系、来自其他数据库的序列和三维结构,以及预测的酶定位和基因组注释等信息。布伦达中存储了超过19万种酶配体的功能和结构数据。还实现了一些新功能来改进分析工具。人体解剖图谱CAVEman与布伦达组织本体术语相链接,为解剖学和功能性酶数据之间提供了联系。从PubMed摘要中获取的酶的词图突出了酶的应用和科学相关性。酶检测器基因组注释工具以及包括来自布伦达、KEGG和MetaCyc反应的反应数据库BKM - react也得到了改进。该网站进行了重新设计,提供了新的查询选项。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/515f/4383907/e646a8e052ab/gku1068fig1.jpg

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