Biotechnology Center, TU Dresden, 01062 Dresden, Germany.
Nucleic Acids Res. 2012 Jan;40(Database issue):D876-80. doi: 10.1093/nar/gkr1011. Epub 2011 Nov 9.
To facilitate the study of interactions between proteins and chemicals, we have created STITCH, an aggregated database of interactions connecting over 300,000 chemicals and 2.6 million proteins from 1133 organisms. Compared to the previous version, the number of chemicals with interactions and the number of high-confidence interactions both increase 4-fold. The database can be accessed interactively through a web interface, displaying interactions in an integrated network view. It is also available for computational studies through downloadable files and an API. As an extension in the current version, we offer the option to switch between two levels of detail, namely whether stereoisomers of a given compound are shown as a merged entity or as separate entities. Separate display of stereoisomers is necessary, for example, for carbohydrates and chiral drugs. Combining the isomers increases the coverage, as interaction databases and publications found through text mining will often refer to compounds without specifying the stereoisomer. The database is accessible at http://stitch.embl.de/.
为了促进蛋白质和化学物质之间相互作用的研究,我们创建了 STITCH 数据库,这是一个聚合数据库,其中包含了来自 1133 种生物的超过 30 万个化学物质和 260 万个蛋白质之间的相互作用。与上一版本相比,具有相互作用的化学物质数量和高可信度相互作用数量都增加了 4 倍。该数据库可以通过网络界面进行交互式访问,以集成网络视图显示相互作用。也可以通过可下载的文件和 API 进行计算研究。作为当前版本的扩展,我们提供了在两个详细级别之间切换的选项,即是否将给定化合物的立体异构体显示为合并实体或单独实体。例如,对于碳水化合物和手性药物,需要单独显示立体异构体。单独显示异构体可以增加覆盖率,因为通过文本挖掘找到的相互作用数据库和出版物通常会引用化合物而不指定其立体异构体。该数据库可在 http://stitch.embl.de/ 访问。