Department of Biological Sciences, National University of Singapore, 14 Science Drive 4, Singapore 117543.
Biochemistry. 2020 Aug 4;59(30):2788-2795. doi: 10.1021/acs.biochem.0c00493. Epub 2020 Jul 21.
Human neutrophil elastase (hNE) is a serine protease that plays a major role in defending the bacterial infection. However, elevated expression of hNE is reported in lung and breast cancer, among others. Moreover, hNE is a target for the treatment of cardiopulmonary diseases. Ecotin (ET) is a serine protease inhibitor present in many Gram-negative bacteria, and it plays a physiological role in inhibiting host proteases, including hNE. Despite this known interaction, the structure of the hNE-ET complex has not been reported, and the mechanism of ecotin inhibition is not available. We determined the structure of the hNE-ET complex by molecular replacement method. The structure of the hNE-ET complex revealed the presence of six interface regions comprising 50s, 60s, and 80s loops, between the ET dimer and two independent hNE monomers, which explains the high affinity of ecotin for hNE (12 pM). Notably, we observed a secondary binding site of hNE located 24 Å from the primary binding site. Comparison of the closely related trypsin-ecotin complex with our hNE-ET complex shows movement of the backbone atoms of the 80s and 50s loops by 4.6 Å, suggesting the flexibility of these loops in inhibiting a range of proteases. Through a detailed structural analysis, we demonstrate the flexibility of the hNE subsites to dock various side chains concomitant with inhibition, indicating the broad specificity of hNE against various inhibitors. These findings will aid in the design of chimeric inhibitors that target both sites of hNE and in the development of therapeutics for controlling hNE-mediated pathogenesis.
人中性粒细胞弹性蛋白酶 (hNE) 是一种丝氨酸蛋白酶,在抵御细菌感染中发挥着重要作用。然而,在肺癌和乳腺癌等疾病中,hNE 的表达水平升高。此外,hNE 还是治疗心肺疾病的靶点。Ecotin (ET) 是存在于许多革兰氏阴性细菌中的一种丝氨酸蛋白酶抑制剂,它在抑制包括 hNE 在内的宿主蛋白酶方面发挥着生理作用。尽管存在这种已知的相互作用,但尚未报道 hNE-ET 复合物的结构,也无法获得 ecotin 的抑制机制。我们通过分子置换法确定了 hNE-ET 复合物的结构。hNE-ET 复合物的结构揭示了 ET 二聚体和两个独立的 hNE 单体之间存在六个界面区域,这些区域由 50s、60s 和 80s 环组成,解释了 ecotin 与 hNE 具有高亲和力(12 pM)的原因。值得注意的是,我们观察到 hNE 存在位于主要结合位点 24 Å 处的次要结合位点。与我们的 hNE-ET 复合物相比,与密切相关的胰蛋白酶-ecotin 复合物的比较表明,80s 和 50s 环的骨架原子发生了 4.6 Å 的移动,这表明这些环在抑制一系列蛋白酶方面具有灵活性。通过详细的结构分析,我们证明了 hNE 亚基结合各种侧链的灵活性,同时抑制这些侧链,这表明 hNE 对各种抑制剂具有广泛的特异性。这些发现将有助于设计靶向 hNE 两个位点的嵌合抑制剂,并为控制 hNE 介导的发病机制的治疗方法的开发提供帮助。