Malaria is responsible for approximately 1 million deaths annually; thus, continued efforts to discover new antimalarials are required. A HTS screen was established to identify novel inhibitors of the parasite's mitochondrial enzyme NADH:quinone oxidoreductase (PfNDH2). On the basis of only one known inhibitor of this enzyme, the challenge was to discover novel inhibitors of PfNDH2 with diverse chemical scaffolds. To this end, using a range of ligand-based chemoinformatics methods, ~17000 compounds were selected from a commercial library of ~750000 compounds. Forty-eight compounds were identified with PfNDH2 enzyme inhibition IC(50) values ranging from 100 nM to 40 μM and also displayed exciting whole cell antimalarial activity. These novel inhibitors were identified through sampling 16% of the available chemical space, while only screening 2% of the library. This study confirms the added value of using multiple ligand-based chemoinformatic approaches and has successfully identified novel distinct chemotypes primed for development as new agents against malaria.
Identification of novel antimalarial chemotypes via chemoinformatic compound selection methods for a high-throughput screening program against the novel malarial target, PfNDH2: increasing hit rate via virtual screening methods.
通过化学信息学化合物选择方法鉴定新型抗疟疾化学类型,用于针对新型疟疾靶点 PfNDH2 的高通量筛选程序:通过虚拟筛选方法提高命中率
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作者:Sharma Raman, Lawrenson Alexandre S, Fisher Nicholas E, Warman Ashley J, Shone Alison E, Hill Alasdair, Mbekeani Alison, Pidathala Chandrakala, Amewu Richard K, Leung Suet, Gibbons Peter, Hong David W, Stocks Paul, Nixon Gemma L, Chadwick James, Shearer Joanne, Gowers Ian, Cronk David, Parel Serge P, O'Neill Paul M, Ward Stephen A, Biagini Giancarlo A, Berry Neil G
| 期刊: | Journal of Medicinal Chemistry | 影响因子: | 6.800 |
| 时间: | 2012 | 起止号: | 2012 Apr 12; 55(7):3144-54 |
| doi: | 10.1021/jm3001482 | ||
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