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Dabigatran and dabigatran ethyl ester: Potent inhibitors of ribosyldihydronicotinamide dehydrogenase (NQO2)

机译:达比加群酯和达比加群酯乙酯:核糖二氢烟碱酰胺脱氢酶(NQO2)的有效抑制剂

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摘要

Recent studies have revealed that compounds believed to be highly selective frequently address multiple target proteins. We investigated the protein interaction profile of the widely prescribed thrombin inhibitor dabigatran (1), resulting in the identification and subsequent characterization of an additional target enzyme. Our findings are based on an unbiased functional proteomics approach called capture compound mass spectrometry (CCMS) and were confirmed by independent biological assays. 1 was shown to specifically bind ribosyldihydronicotinamide dehydrogenase (NQO2), a detoxification oxidoreductase. Molecular dockings predicted and biological experiments confirmed that dabigatran ethyl ester (2) inhibits NQO2 even more effectively than the parent 1 itself. Our data show that 1 and 2 are inhibitors of NQO2, thereby revealing a possible new aspect in the mode of action of 1. We present a workflow employing chemical proteomics, molecular modeling, and functional assays by which a compound's protein-interaction profile can be determined and used to tune the binding affinity.
机译:最近的研究表明,被认为具有高选择性的化合物通常可以处理多种靶蛋白。我们调查了广泛规定的凝血酶抑制剂达比加群(1)的蛋白质相互作用曲线,从而鉴定了其他靶标酶并对其进行了后续表征。我们的发现基于称为捕获化合物质谱(CCMS)的无偏功能蛋白质组学方法,并通过独立的生物学分析得到了证实。图1显示了特异性结合核糖二氢烟碱酰胺脱氢酶(NQO2),一种解毒氧化还原酶。预测的分子对接和生物学实验证实,达比加群乙酯(2)抑制NQO2的作用甚至比亲代1本身更有效。我们的数据表明1和2是NQO2的抑制剂,从而揭示了1的作用方式可能是一个新的方面。我们提出了利用化学蛋白质组学,分子模型和功能测定的工作流程,通过该工作流程可以对化合物的蛋白质相互作用进行分析。确定并用于调节结合亲和力。

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