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Potent fibrinolysis inhibitor discovered by shape and electrostatic complementarity to the drug tranexamic acid

机译:通过与药物氨甲环酸的形状和静电互补发现有效的纤维蛋白溶解抑制剂

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摘要

Protein-protein interfaces provide an important class of drug targets currently receiving increased attention. The typical design strategy to inhibit protein-protein interactions usually involves large molecules such as peptides and macrocycles. One exception is tranexamic acid (TXA), which, as a lysine mimetic, inhibits binding of plasminogen to fibrin. However, the daily dose of TXA is high due to its modest potency and pharmacokinetic properties. In this study, we report a computational approach, where the focus was on finding electrostatic potential similarities to TXA. Coupling this computational technique with a high-quality low-throughput screen identified 5-(4-piperidyl)-3-isoxazolol (4-PIOL) as a potent plasminogen binding inhibitor with the potential for the treatment of various bleeding disorders. Remarkably, 4-PIOL was found to be more than four times as potent as the drug TXA.
机译:蛋白质-蛋白质界面提供了一类重要的药物靶标,目前受到越来越多的关注。抑制蛋白质与蛋白质相互作用的典型设计策略通常涉及大分子,例如肽和大环化合物。一个例外是氨甲环酸(TXA),它是赖氨酸模拟物,可抑制纤溶酶原与纤维蛋白的结合。但是,TXA的日剂量由于其适度的药效和药代动力学特性而很高。在这项研究中,我们报告了一种计算方法,重点是寻找与TXA的静电势相似性。将此计算技术与高质量的低通量筛选结合起来,可以确定5-(4-哌啶基)-3-异恶唑醇(4-PIOL)是有效的纤溶酶原结合抑制剂,具有治疗各种出血性疾病的潜力。值得注意的是,发现4-PIOL的效力是TXA药物的四倍以上。

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