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利用人中性粒细胞蛋白酶 3 的 S4-S5 特异性提高肽基二(氯苯基)-膦酸酯酯抑制剂的效力:动力学和分子建模分析。

Exploiting the S4-S5 Specificity of Human Neutrophil Proteinase 3 to Improve the Potency of Peptidyl Di(chlorophenyl)-phosphonate Ester Inhibitors: A Kinetic and Molecular Modeling Analysis.

机构信息

INSERM UMR1100, "Centre d'Etude des Pathologies Respiratoires" , Université de Tours , 37032 Tours , France.

Faculty of Chemistry , University of Gdansk , Wita Stwosza 63 , 80-308 Gdansk , Poland.

出版信息

J Med Chem. 2018 Mar 8;61(5):1858-1870. doi: 10.1021/acs.jmedchem.7b01416. Epub 2018 Feb 26.

Abstract

The neutrophilic serine protease proteinase 3 (PR3) is involved in inflammation and immune response and thus appears as a therapeutic target for a variety of infectious and inflammatory diseases. Here we combined kinetic and molecular docking studies to increase the potency of peptidyl-diphenyl phosphonate PR3 inhibitors. Occupancy of the S1 subsite of PR3 by a nVal residue and of the S4-S5 subsites by a biotinylated Val residue as obtained in biotin-VYDnV(O-CH-4-Cl) enhanced the second-order inhibition constant k/[I] toward PR3 by more than 10 times ( k/[I] = 73000 ± 5000 M s) as compared to the best phosphonate PR3 inhibitor previously reported. This inhibitor shows no significant inhibitory activity toward human neutrophil elastase and resists proteolytic degradation in sputa from cystic fibrosis patients. It also inhibits macaque PR3 but not the PR3 from rodents and can thus be used for in vivo assays in a primate model of inflammation.

摘要

中性粒细胞丝氨酸蛋白酶蛋白酶 3(PR3)参与炎症和免疫反应,因此成为各种感染和炎症性疾病的治疗靶点。在这里,我们结合了动力学和分子对接研究来提高肽基二苯膦酸 PR3 抑制剂的效力。在生物素-VYDnV(O-CH-4-Cl)中,通过占据 PR3 的 S1 亚位点的 nVal 残基和占据 S4-S5 亚位点的生物素化 Val 残基,与之前报道的最佳膦酸 PR3 抑制剂相比,对 PR3 的二级抑制常数 k/[I]提高了 10 多倍(k/[I] = 73000 ± 5000 M s)。与人类中性粒细胞弹性蛋白酶相比,该抑制剂对其没有明显的抑制活性,并且能够抵抗囊性纤维化患者痰液中的蛋白水解降解。它还抑制猕猴 PR3,但不抑制啮齿动物的 PR3,因此可用于灵长类动物炎症模型中的体内测定。

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