Department of Pharmacy - Pharmaceutical Sciences, University of Bari "Aldo Moro", Via E. Orabona 4, 70125, Bari, Italy.
Istituto di Cristallografia, Consiglio Nazionale delle Ricerche, Via Amendola 122/o, 70126, Bari, Italy.
Sci Rep. 2021 Feb 22;11(1):4312. doi: 10.1038/s41598-021-83438-z.
The beneficial effects of Cyclooxygenases (COX) inhibitors on human health have been known for thousands of years. Nevertheless, COXs, particularly COX-1, have been linked to a plethora of human diseases such as cancer, heart failure, neurological and neurodegenerative diseases only recently. COXs catalyze the first step in the biosynthesis of prostaglandins (PGs) and are among the most important mediators of inflammation. All published structural work on COX-1 deals with the ovine isoenzyme, which is easier to produce in milligram-quantities than the human enzyme and crystallizes readily. Here, we report the long-sought structure of the human cyclooxygenase-1 (hCOX-1) that we refined to an R/R of 20.82/26.37, at 3.36 Å resolution. hCOX-1 structure provides a detailed picture of the enzyme active site and the residues crucial for inhibitor/substrate binding and catalytic activity. We compared hCOX-1 crystal structure with the ovine COX-1 and human COX-2 structures by using metrics based on Cartesian coordinates, backbone dihedral angles, and solvent accessibility coupled with multivariate methods. Differences and similarities among structures are discussed, with emphasis on the motifs responsible for the diversification of the various enzymes (primary structure, stability, catalytic activity, and specificity). The structure of hCOX-1 represents an essential step towards the development of new and more selective COX-1 inhibitors of enhanced therapeutic potential.
环氧化酶(COX)抑制剂对人类健康的有益影响已经有数千年的历史。然而,COX,特别是 COX-1,最近才与许多人类疾病有关,如癌症、心力衰竭、神经和神经退行性疾病。COX 催化前列腺素(PGs)生物合成的第一步,是炎症的最重要介质之一。所有已发表的关于 COX-1 的结构研究都涉及绵羊同工酶,它比人类同工酶更容易在毫克级生产,并且易于结晶。在这里,我们报告了人类环氧化酶-1(hCOX-1)的长期寻求的结构,我们将其精修至 R/R 为 20.82/26.37,分辨率为 3.36 Å。hCOX-1 结构提供了酶活性位点以及对抑制剂/底物结合和催化活性至关重要的残基的详细图片。我们通过基于笛卡尔坐标、骨干二面角和溶剂可及性的指标以及多元方法,将 hCOX-1 晶体结构与绵羊 COX-1 和人 COX-2 结构进行了比较。讨论了结构之间的差异和相似之处,重点是负责各种酶多样化的基序(一级结构、稳定性、催化活性和特异性)。hCOX-1 的结构代表了朝着开发新的和更具选择性的 COX-1 抑制剂以提高治疗潜力迈出的重要一步。