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进一步修饰 1H-吡咯并[2,3-b]吡啶衍生物作为人中性粒细胞弹性蛋白酶抑制剂。

Further modifications of 1H-pyrrolo[2,3-b]pyridine derivatives as inhibitors of human neutrophil elastase.

机构信息

NEUROFARBA, Pharmaceutical and Nutraceutical Section, University of Florence, Sesto Fiorentino, Italy.

Department of Microbiology and Immunology, Montana State University, Bozeman, Montana.

出版信息

Drug Dev Res. 2019 Aug;80(5):617-628. doi: 10.1002/ddr.21539. Epub 2019 Apr 19.

Abstract

Human neutrophil elastase (HNE) is a potent protease that plays an important physiological role in many processes and is considered to be a multifunctional enzyme. HNE is also involved in a variety of pathologies affecting the respiratory system. Thus, compounds able to inhibit HNE proteolytic activity could represent effective therapeutics. We present here a new series of pyrrolo[2,3-b]pyridine derivatives of our previously reported potent HNE inhibitors. Our results show that position 2 of the pyrrolo[2,3-b]pyridine scaffold must be unsubstituted, and modifications of this position resulted in loss of HNE inhibitory activity. Conversely, the introduction of certain substituents at position 5 was tolerated, with retention of HNE inhibitory activity (IC  = 15-51 nM) after most substitutions, indicating that bulky and/or lipophilic substituents at position 5 probably interact with the large pocket of the enzyme site and allow Michaelis complex formation. The possibility of Michaelis complex formation between Ser195 and the ligand carbonyl group was assessed by molecular docking, and it was found that highly active HNE inhibitors are characterized by geometries favorable for Michaelis complex formation and by relatively short lengths of the proton transfer channel via the catalytic triad.

摘要

人中性粒细胞弹性蛋白酶(HNE)是一种强效蛋白酶,在许多过程中发挥着重要的生理作用,被认为是一种多功能酶。HNE 还参与了多种影响呼吸系统的病理过程。因此,能够抑制 HNE 蛋白水解活性的化合物可能代表有效的治疗方法。我们在此展示了一系列新的吡咯并[2,3-b]吡啶衍生物,它们是我们之前报道的强效 HNE 抑制剂的衍生物。我们的结果表明,吡咯并[2,3-b]吡啶支架的 2 号位必须未取代,该位置的修饰会导致 HNE 抑制活性丧失。相反,在 5 号位引入某些取代基是可以容忍的,在大多数取代后仍保留 HNE 抑制活性(IC  = 15-51 nM),这表明 5 号位的大体积和/或疏水性取代基可能与酶位的大口袋相互作用,并允许 Michaelis 复合物的形成。通过分子对接评估了 Ser195 与配体羰基之间形成 Michaelis 复合物的可能性,发现高度活跃的 HNE 抑制剂的特征是有利于 Michaelis 复合物形成的几何形状,以及通过催化三联体的质子转移通道相对较短的长度。

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