片段(逻辑)
配体效率
铅(地质)
铅化合物
计算生物学
化学
组合化学
配体(生物化学)
药物发现
小分子
计算机科学
纳米技术
生物化学
材料科学
生物
受体
算法
古生物学
体外
作者
David C. Rees,Miles Congreve,Christopher W. Murray,Robin A. E. Carr
摘要
Fragment-based lead discovery is gaining momentum in both large pharmaceutical companies and biotechnology laboratories as a complementary approach to traditional screening. This is because fragment-based approaches require significantly fewer compounds to be screened and synthesized, and are showing a high success rate in generating chemical series with lead-like properties. Compared with traditional screening hits, the starting fragments have considerably lower molecular mass, and although the binding interactions of these fragments with a target protein are weak, they are structurally understood through X-ray crystallography or NMR, and they exhibit high 'ligand efficiency'. Here, we use examples from 25 different protein targets to describe chemical strategies that exploit this structural knowledge to rapidly develop fragments into high-affinity leads.
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