Large-scale prediction and testing of drug activity on side-effect targets

被引:631
|
作者
Lounkine, Eugen [1 ]
Keiser, Michael J. [2 ,3 ]
Whitebread, Steven [1 ]
Mikhailov, Dmitri [1 ]
Hamon, Jacques [4 ]
Jenkins, Jeremy L. [1 ]
Lavan, Paul [4 ]
Weber, Eckhard [4 ]
Doak, Allison K. [3 ]
Cote, Serge [4 ]
Shoichet, Brian K. [3 ]
Urban, Laszlo [1 ]
机构
[1] Novartis Inst Biomed Res, Cambridge, MA 02139 USA
[2] SeaChange Pharmaceut Inc, San Francisco, CA 94158 USA
[3] Univ Calif San Francisco, Dept Pharmaceut Chem, San Francisco, CA 94158 USA
[4] Novartis Inst Biomed Res, CH-4056 Basel, Switzerland
基金
美国国家卫生研究院;
关键词
PHARMACOLOGY; NETWORK; DATABASE; IDENTIFICATION; INHIBITION; GENERATION; TOXICITY; HERG;
D O I
10.1038/nature11159
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Discovering the unintended 'off-targets' that predict adverse drug reactions is daunting by empirical methods alone. Drugs can act on several protein targets, some of which can be unrelated by conventional molecular metrics, and hundreds of proteins have been implicated in side effects. Here we use a computational strategy to predict the activity of 656 marketed drugs on 73 unintended 'side-effect' targets. Approximately half of the predictions were confirmed, either from proprietary databases unknown to the method or by new experimental assays. Affinities for these new off-targets ranged from 1nM to 30 mu M. To explore relevance, we developed an association metric to prioritize those new off-targets that explained side effects better than any known target of a given drug, creating a drug-target-adverse drug reaction network. Among these new associations was the prediction that the abdominal pain side effect of the synthetic oestrogen chlorotrianisene was mediated through its newly discovered inhibition of the enzyme cyclooxygenase-1. The clinical relevance of this inhibition was borne out in whole human blood platelet aggregation assays. This approach may have wide application to de-risking toxicological liabilities in drug discovery.
引用
收藏
页码:361 / +
页数:8
相关论文
共 50 条
  • [31] Large-Scale Predictive Drug Safety: From Structural Alerts to Biological Mechanisms
    Garcia-Serna, Ricard
    Vidal, David
    Remez, Nikita
    Mestres, Jordi
    CHEMICAL RESEARCH IN TOXICOLOGY, 2015, 28 (10) : 1875 - 1887
  • [32] A large-scale evaluation of computational protein function prediction
    Radivojac, Predrag
    Clark, Wyatt T.
    Oron, Tal Ronnen
    Schnoes, Alexandra M.
    Wittkop, Tobias
    Sokolov, Artem
    Graim, Kiley
    Funk, Christopher
    Verspoor, Karin
    Ben-Hur, Asa
    Pandey, Gaurav
    Yunes, Jeffrey M.
    Talwalkar, Ameet S.
    Repo, Susanna
    Souza, Michael L.
    Piovesan, Damiano
    Casadio, Rita
    Wang, Zheng
    Cheng, Jianlin
    Fang, Hai
    Goughl, Julian
    Koskinen, Patrik
    Toronen, Petri
    Nokso-Koivisto, Jussi
    Holm, Liisa
    Cozzetto, Domenico
    Buchan, Daniel W. A.
    Bryson, Kevin
    Jones, David T.
    Limaye, Bhakti
    Inamdar, Harshal
    Datta, Avik
    Manjari, Sunitha K.
    Joshi, Rajendra
    Chitale, Meghana
    Kihara, Daisuke
    Lisewski, Andreas M.
    Erdin, Serkan
    Venner, Eric
    Lichtarge, Olivier
    Rentzsch, Robert
    Yang, Haixuan
    Romero, Alfonso E.
    Bhat, Prajwal
    Paccanaro, Alberto
    Hamp, Tobias
    Kassner, Rebecca
    Seemayer, Stefan
    Vicedo, Esmeralda
    Schaefer, Christian
    NATURE METHODS, 2013, 10 (03) : 221 - 227
  • [33] Large-scale identification of potential drug targets based on the topological features of human protein-protein interaction network
    Li, Zhan-Chao
    Zhong, Wen-Qian
    Liu, Zhi-Qing
    Huang, Meng-Hua
    Xie, Yun
    Dai, Zong
    Zou, Xiao-Yong
    ANALYTICA CHIMICA ACTA, 2015, 871 : 18 - 27
  • [34] catRAPID omics: a web server for large-scale prediction of protein-RNA interactions
    Agostini, Federico
    Zanzoni, Andreas
    Klus, Petr
    Marchese, Domenica
    Cirillo, Davide
    Gaetano Tartaglia, Gian
    BIOINFORMATICS, 2013, 29 (22) : 2928 - 2930
  • [35] Large-Scale QSAR in Target Prediction and Phenotypic HTS Assessment
    Jenkins, Jeremy L.
    MOLECULAR INFORMATICS, 2012, 31 (6-7) : 508 - 514
  • [36] Large-Scale Arrayed Analysis of Protein Degradation Reveals Cellular Targets for HIV-1 Vpu
    Jain, Prashant
    Boso, Guney
    Langer, Simon
    Soonthornvacharin, Stephen
    De Jesus, Paul D.
    Quy Nguyen
    Olivieri, Kevin C.
    Portillo, Alex J.
    Yoh, Sunnie M.
    Pache, Lars
    Chanda, Sumit K.
    CELL REPORTS, 2018, 22 (09): : 2493 - 2503
  • [37] Large-scale recordings for drug screening in neural circuit systems
    Ikegaya, Yuji
    YAKUGAKU ZASSHI-JOURNAL OF THE PHARMACEUTICAL SOCIETY OF JAPAN, 2008, 128 (09): : 1251 - 1257
  • [38] Bi-level scheduling of large-scale electric vehicles based on the generation side and the distribution side
    Chang, Shuo
    Niu, Yugang
    Jia, Tinggang
    INTERNATIONAL TRANSACTIONS ON ELECTRICAL ENERGY SYSTEMS, 2021, 31 (12)
  • [39] Rational drug repositioning for coronavirus-associated diseases using directional mapping and side-effect inference
    Wang, Jianhua
    Liu, Jiaojiao
    Luo, Menghan
    Cui, Hui
    Zhang, Wenwen
    Zhao, Ke
    Dai, Hongji
    Song, Fangfang
    Chen, Kexin
    Yu, Ying
    Zhou, Dongming
    Li, Mulin Jun
    Yang, Hongxi
    ISCIENCE, 2022, 25 (11)
  • [40] Exploiting large-scale drug-protein interaction information for computational drug repurposing
    Liu, Ruifeng
    Singh, Narender
    Tawa, Gregory J.
    Wallqvist, Anders
    Reifman, Jaques
    BMC BIOINFORMATICS, 2014, 15