变构调节
计算生物学
对接(动物)
小分子
结合位点
分子动力学
药物发现
生物
化学
生物信息学
生物化学
酶
医学
计算化学
护理部
作者
Barry J. Grant,Suryani Lukman,Harrison J. Hocker,Jaqueline Sayyah,Joan Heller Brown,J. Andrew McCammon,Alemayehu A. Gorfe
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2011-10-25
卷期号:6 (10): e25711-e25711
被引量:184
标识
DOI:10.1371/journal.pone.0025711
摘要
Aberrant Ras activity is a hallmark of diverse cancers and developmental diseases. Unfortunately, conventional efforts to develop effective small molecule Ras inhibitors have met with limited success. We have developed a novel multi-level computational approach to discover potential inhibitors of previously uncharacterized allosteric sites. Our approach couples bioinformatics analysis, advanced molecular simulations, ensemble docking and initial experimental testing of potential inhibitors. Molecular dynamics simulation highlighted conserved allosteric coupling of the nucleotide-binding switch region with distal regions, including loop 7 and helix 5. Bioinformatics methods identified novel transient small molecule binding pockets close to these regions and in the vicinity of the conformationally responsive switch region. Candidate binders for these pockets were selected through ensemble docking of ZINC and NCI compound libraries. Finally, cell-based assays confirmed our hypothesis that the chosen binders can inhibit the downstream signaling activity of Ras. We thus propose that the predicted allosteric sites are viable targets for the development and optimization of new drugs.
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