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首页> 外文期刊>Angewandte Chemie >Fragment Linking and Optimization of Inhibitors of the Aspartic Protease Endothiapepsin: Fragment-Based Drug Design Facilitated by Dynamic Combinatorial Chemistry
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Fragment Linking and Optimization of Inhibitors of the Aspartic Protease Endothiapepsin: Fragment-Based Drug Design Facilitated by Dynamic Combinatorial Chemistry

机译:片段连接和天冬氨酸蛋白酶内皮蛋白酶抑制剂的优化:动态组合化学促进基于片段的药物设计。

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摘要

Fragment-based drug design (FBDD) affords active compounds for biological targets. While there are numerous reports on FBDD by fragment growing/optimization, fragment linking has rarely been reported. Dynamic combinatorial chemistry (DCC) has become a powerful hit-identification strategy for biological targets. We report the synergistic combination of fragment linking and DCC to identify inhibitors of the aspartic protease endothiapepsin. Based on X-ray crystal structures of endothiapepsin in complex with fragments, we designed a library of bis-acylhydrazones and used DCC to identify potent inhibitors. The most potent inhibitor exhibits an IC50 value of 54 nM, which represents a 240-fold improvement in potency compared to the parent hits. Subsequent X-ray crystallography validated the predicted binding mode, thus demonstrating the efficiency of the combination of fragment linking and DCC as a hit-identification strategy. This approach could be applied to a range of biological targets, and holds the potential to facilitate hit-to-lead optimization.
机译:基于片段的药物设计(FBDD)提供了用于生物靶标的活性化合物。尽管通过片段增长/优化有许多关于FBDD的报道,但很少有片段链接的报道。动态组合化学(DCC)已成为生物目标的强大命中识别策略。我们报告了片段连接和DCC的协同组合,以鉴定天冬氨酸蛋白酶内皮蛋白酶的抑制剂。基于内皮抑素与片段复合的X射线晶体结构,我们设计了一个双酰基azo的文库,并使用DCC鉴定了有效的抑制剂。最有效的抑制剂表现出54 nM的IC50值,与亲本命中相比,其效力提高了240倍。随后的X射线晶体学验证了预测的结合模式,从而证明了片段连接和DCC组合作为命中识别策略的效率。这种方法可以应用于一系列生物靶标,并具有促进按铅优化的潜力。

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