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DroID:果蝇相互作用数据库,一个用于注释基因和蛋白质相互作用的综合资源库。

DroID: the Drosophila Interactions Database, a comprehensive resource for annotated gene and protein interactions.

作者信息

Yu Jingkai, Pacifico Svetlana, Liu Guozhen, Finley Russell L

机构信息

Center for Molecular Medicine and Genetics, Wayne State University School of Medicine, 540 East Canfield Ave., Detroit, MI 48201, USA.

出版信息

BMC Genomics. 2008 Oct 7;9:461. doi: 10.1186/1471-2164-9-461.

Abstract

BACKGROUND

Charting the interactions among genes and among their protein products is essential for understanding biological systems. A flood of interaction data is emerging from high throughput technologies, computational approaches, and literature mining methods. Quick and efficient access to this data has become a critical issue for biologists. Several excellent multi-organism databases for gene and protein interactions are available, yet most of these have understandable difficulty maintaining comprehensive information for any one organism. No single database, for example, includes all available interactions, integrated gene expression data, and comprehensive and searchable gene information for the important model organism, Drosophila melanogaster.

DESCRIPTION

DroID, the Drosophila Interactions Database, is a comprehensive interactions database designed specifically for Drosophila. DroID houses published physical protein interactions, genetic interactions, and computationally predicted interactions, including interologs based on data for other model organisms and humans. All interactions are annotated with original experimental data and source information. DroID can be searched and filtered based on interaction information or a comprehensive set of gene attributes from Flybase. DroID also contains gene expression and expression correlation data that can be searched and used to filter datasets, for example, to focus a study on sub-networks of co-expressed genes. To address the inherent noise in interaction data, DroID employs an updatable confidence scoring system that assigns a score to each physical interaction based on the likelihood that it represents a biologically significant link.

CONCLUSION

DroID is the most comprehensive interactions database available for Drosophila. To facilitate downstream analyses, interactions are annotated with original experimental information, gene expression data, and confidence scores. All data in DroID are freely available and can be searched, explored, and downloaded through three different interfaces, including a text based web site, a Java applet with dynamic graphing capabilities (IM Browser), and a Cytoscape plug-in. DroID is available at http://www.droidb.org.

摘要

背景

绘制基因及其蛋白质产物之间的相互作用图谱对于理解生物系统至关重要。高通量技术、计算方法和文献挖掘方法正在产生大量的相互作用数据。快速有效地获取这些数据已成为生物学家面临的关键问题。有几个优秀的多生物体基因和蛋白质相互作用数据库,但其中大多数在为任何一种生物体维护全面信息方面都存在难以避免的困难。例如,没有一个单一的数据库包含重要模式生物黑腹果蝇的所有可用相互作用、整合的基因表达数据以及全面且可搜索的基因信息。

描述

果蝇相互作用数据库(DroID)是一个专门为果蝇设计的综合性相互作用数据库。DroID收录了已发表的物理蛋白质相互作用、遗传相互作用以及通过计算预测的相互作用,包括基于其他模式生物和人类数据的同源类似物。所有相互作用都用原始实验数据和来源信息进行注释。可以根据相互作用信息或来自Flybase的一整套基因属性对DroID进行搜索和筛选。DroID还包含基因表达和表达相关性数据,这些数据可用于搜索和筛选数据集,例如,将研究聚焦于共表达基因的子网。为了解决相互作用数据中固有的噪声问题,DroID采用了一个可更新的置信度评分系统,该系统根据每个物理相互作用代表生物学上显著联系的可能性为其分配一个分数。

结论

DroID是目前可获得的最全面的果蝇相互作用数据库。为便于进行下游分析,相互作用用原始实验信息、基因表达数据和置信度分数进行注释。DroID中的所有数据均可免费获取,并且可以通过三种不同的界面进行搜索、浏览和下载,包括基于文本的网站、具有动态绘图功能的Java小程序(IM浏览器)以及Cytoscape插件。可通过http://www.droidb.org访问DroID。

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