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An Active Gene Annotation Corpus and Its Application on Anti-epilepsy Drug Discovery

机译:活性基因注释语料库及其在抗癫痫药物发现中的应用

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After mutation, a gene either gains or loses a function, which is considered to be a critical piece of information for understanding a related pathology and thus for drug discovery. By classifying association of genes and phenotypes using the information of gain-of-function or loss-of-function, the exploration for drug repurposing can be guided in a much more efficient way. We present the active gene annotation corpus (AGAC), which contains 500 manually annotated abstracts collected from PubMed. Five bio-concept labels and three regulatory concept labels were designed for concept level annotation. Furthermore, two relation types, “Theme” and “Cause”, were designed to interlink regulatory concepts with their thematic and causal elements. We evaluated AGAC from three aspects, the results of which indicate the high quality of the annotation. Eventually, a PubMed-wide case study was performed to show that by using AGAC the process of anti-epilepsy drug discovery can be enhanced. After text retrieval, filtering, text classification and matching with DrugBank entries, 281 gene-drug pairs and 112 drugs were obtained and 30 out of 112 were recorded in databases. Among 10 newly predicted multi-target drugs which were not recorded in databases, 6 of them were found to be related to epilepsy with literature support, i.e., Oxazepam, Temazepam, Halazepam, Prazepam, Zolpidem and Thiamylal. The result of the case study support the potential of AGAC for enhancing knowledge discovery for drug repurposing.
机译:突变后,基因要么获得功能,要么失去功能,这被认为是了解相关病理学以及药物开发的重要信息。通过使用功能获得或功能丧失的信息对基因和表型的关联进行分类,可以以更有效的方式指导药物再利用的探索。我们介绍了主动基因注释语料库(AGAC),其中包含500个从PubMed收集的手动注释摘要。为概念级别注释设计了五个生物概念标签和三个监管概念标签。此外,设计了两种关系类型,“主题”和“原因”,以将监管概念与其主题和因果元素联系起来。我们从三个方面对AGAC进行了评估,其结果表明了注释的高质量。最终,进行了一次PubMed案例研究,结果表明,通过使用AGAC,可以增强抗癫痫药发现的过程。经过文本检索,过滤,文本分类以及与DrugBank条目的匹配,获得了281种基因药物对和112种药物,数据库中记录了112种药物中的30种。在数据库中未记录的10种新预测的多靶点药物中,有6种在文献支持下被发现与癫痫有关,即奥沙西Te,替马西,、哈拉西,、普拉西p,唑吡坦和噻虫胺。案例研究的结果支持了AGAC在增强针对毒品用途的知识发现方面的潜力。

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