Bioinformatics Center, Institute for Chemical Research, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan.
Bioinformatics. 2012 Sep 15;28(18):i611-i618. doi: 10.1093/bioinformatics/bts413.
Unexpected drug activities derived from off-targets are usually undesired and harmful; however, they can occasionally be beneficial for different therapeutic indications. There are many uncharacterized drugs whose target proteins (including the primary target and off-targets) remain unknown. The identification of all potential drug targets has become an important issue in drug repositioning to reuse known drugs for new therapeutic indications.
We defined pharmacological similarity for all possible drugs using the US Food and Drug Administration's (FDA's) adverse event reporting system (AERS) and developed a new method to predict unknown drug-target interactions on a large scale from the integration of pharmacological similarity of drugs and genomic sequence similarity of target proteins in the framework of a pharmacogenomic approach. The proposed method was applicable to a large number of drugs and it was useful especially for predicting unknown drug-target interactions that could not be expected from drug chemical structures. We made a comprehensive prediction for potential off-targets of 1874 drugs with known targets and potential target profiles of 2519 drugs without known targets, which suggests many potential drug-target interactions that were not predicted by previous chemogenomic or pharmacogenomic approaches.
Softwares are available upon request.
yamanishi@bioreg.kyushu-u.ac.jp
Datasets and all results are available at http://cbio.ensmp.fr/~yyamanishi/aers/.
意想不到的药物活性来源于非靶点,通常是不期望的和有害的;然而,它们偶尔也可能对不同的治疗指征有益。有许多未被描述的药物,其靶蛋白(包括主要靶标和非靶标)仍然未知。确定所有潜在的药物靶标已成为药物重定位的一个重要问题,即重新利用已知药物用于新的治疗指征。
我们使用美国食品和药物管理局(FDA)的不良事件报告系统(AERS)为所有可能的药物定义了药理相似性,并开发了一种新方法,即在药物基因组学方法的框架内,通过整合药物的药理相似性和靶蛋白的基因组序列相似性,大规模预测未知的药物-靶标相互作用。该方法适用于大量药物,特别是对于不能从药物化学结构预测的未知药物-靶标相互作用非常有用。我们对 1874 种已知靶标的药物和 2519 种无已知靶标的药物的潜在靶标谱进行了全面预测,这表明了许多以前的化学生物学或药物基因组学方法无法预测的潜在药物-靶标相互作用。
软件可根据要求提供。
yamanishi@bioreg.kyushu-u.ac.jp
数据集和所有结果均可在 http://cbio.ensmp.fr/~yyamanishi/aers/ 获得。