药物发现
公共化学
表型筛选
计算生物学
表型
小分子
药物重新定位
生物
高含量筛选
重新调整用途
生物信息学
药品
遗传学
药理学
细胞
基因
生态学
作者
S. Joshua Swamidass,Constantino Schillebeeckx,Matthew K. Matlock,Mark R. Hurle,Pankaj Agarwal
标识
DOI:10.1177/1087057114523068
摘要
Small-molecule screens are an integral part of drug discovery. Public domain data in PubChem alone represent more than 158 million measurements, 1.2 million molecules, and 4300 assays. We conducted a global analysis of these data, building a network of assays and connecting the assays if they shared nonpromiscuous active molecules. This network spans both phenotypic and target-based screens, recapitulates known biology, and identifies new polypharmacology. Phenotypic screens are extremely important for drug discovery, contributing to the discovery of a large proportion of new drugs. Connections between phenotypic and biochemical, target-based screens can suggest strategies for repurposing both small-molecule and biologic drugs. For example, a screen for molecules that prevent cell death from a mutated version of superoxide-dismutase is linked with ALOX15. This connection suggests a therapeutic role for ALOX15 inhibitors in amyotrophic lateral sclerosis. An interactive version of the network is available online (http://swami.wustl.edu/flow/assay_network.html).
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