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A Novel Drug-Mouse Phenotypic Similarity Method Detects Molecular Determinants of Drug Effects

机译:一种新颖的药物-小鼠表型相似性方法检测药物作用的分子决定因素

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摘要

The molecular mechanisms that translate drug treatment into beneficial and unwanted effects are largely unknown. We present here a novel approach to detect gene-drug and gene-side effect associations based on the phenotypic similarity of drugs and single gene perturbations in mice that account for the polypharmacological property of drugs. We scored the phenotypic similarity of human side effect profiles of 1,667 small molecules and biologicals to profiles of phenotypic traits of 5,384 mouse genes. The benchmarking with known relationships revealed a strong enrichment of physical and indirect drug-target connections, causative drug target-side effect links as well as gene-drug links involved in pharmacogenetic associations among phenotypically similar gene-drug pairs. The validation by in vitro assays and the experimental verification of an unknown connection between oxandrolone and prokineticin receptor 2 reinforces the ability of this method to provide new molecular insights underlying drug treatment. Thus, this approach may aid in the proposal of novel and personalized treatments.
机译:将药物治疗转化为有益和有害作用的分子机制在很大程度上尚不清楚。我们在这里提出了一种新的方法来检测基于药物的表型相似性和小鼠中单个基因扰动的基因-药物和基因-副作用关联,这说明了药物的多药理学性质。我们对1,667个小分子和生物学物质的人类副作用谱与5,384个小鼠基因的表型性状的表型相似性进行了评分。具有已知关系的基准测试揭示了物理和间接药物-靶标连接,致病性药物靶标-副作用链接以及涉及表型相似的基因-药物对之间的药物遗传学关联的基因-药物链接的丰富性。通过体外测定法的验证以及氧杂雄酮与促动素受体2之间未知连接的实验验证,增强了该方法提供潜在药物治疗新分子见解的能力。因此,这种方法可以帮助提出新颖和个性化的治疗方法。

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