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针对冠状病毒感染的实验或临床验证药物的本体论建模和分析。

Ontological modeling and analysis of experimentally or clinically verified drugs against coronavirus infection.

机构信息

Department of Computational Medicine and Bioinformatics, University of Michigan Medical School, Ann Arbor, MI, 48109, USA.

University of North Dakota School of Medicine and Health Sciences, Grand Forks, ND, 58202, USA.

出版信息

Sci Data. 2021 Jan 13;8(1):16. doi: 10.1038/s41597-021-00799-w.

Abstract

Our systematic literature collection and annotation identified 106 chemical drugs and 31 antibodies effective against the infection of at least one human coronavirus (including SARS-CoV, SAR-CoV-2, and MERS-CoV) in vitro or in vivo in an experimental or clinical setting. A total of 163 drug protein targets were identified, and 125 biological processes involving the drug targets were significantly enriched based on a Gene Ontology (GO) enrichment analysis. The Coronavirus Infectious Disease Ontology (CIDO) was used as an ontological platform to represent the anti-coronaviral drugs, chemical compounds, drug targets, biological processes, viruses, and the relations among these entities. In addition to new term generation, CIDO also adopted various terms from existing ontologies and developed new relations and axioms to semantically represent our annotated knowledge. The CIDO knowledgebase was systematically analyzed for scientific insights. To support rational drug design, a "Host-coronavirus interaction (HCI) checkpoint cocktail" strategy was proposed to interrupt the important checkpoints in the dynamic HCI network, and ontologies would greatly support the design process with interoperable knowledge representation and reasoning.

摘要

我们的系统文献收集和注释确定了 106 种化学药物和 31 种抗体,这些药物在实验或临床环境中针对至少一种人类冠状病毒(包括 SARS-CoV、SAR-CoV-2 和 MERS-CoV)的感染具有体外或体内有效性。总共确定了 163 个药物蛋白靶点,并且基于基因本体论(GO)富集分析,涉及药物靶点的 125 个生物过程显著富集。冠状病毒传染病本体论(CIDO)被用作一个本体论平台来表示抗冠状病毒药物、化学化合物、药物靶点、生物过程、病毒以及这些实体之间的关系。除了生成新术语外,CIDO 还从现有本体论中采用了各种术语,并开发了新的关系和公理来从语义上表示我们注释的知识。对 CIDO 知识库进行了系统的科学分析。为了支持合理的药物设计,提出了“宿主-冠状病毒相互作用(HCI)检查点鸡尾酒”策略,以打断动态 HCI 网络中的重要检查点,本体论将通过可互操作的知识表示和推理极大地支持设计过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d48e/7806933/df0cc03dd6eb/41597_2021_799_Fig1_HTML.jpg

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