哺乳动物环氧合酶的结构。

R Michael Garavito, Anne M Mulichak
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引用次数: 136

摘要

环氧化酶-1和-2 (COX-1和COX-2,也称为前列腺素H2合成酶-1和-2)催化前列腺素合成的承诺步骤。COX-1和cox -2是特别有趣的,因为它们是非甾体抗炎药(NSAIDs)的主要靶点,包括阿司匹林、布洛芬和新的cox -2选择性抑制剂。用非甾体抗炎药抑制COXs可急剧减轻炎症、疼痛和发热,长期使用这些药物可减少致死性血栓事件的发生率,以及结肠癌和阿尔茨海默病的发展。在这篇综述中,我们研究了COX的结构如何与环加氧酶和过氧化物酶催化机制相关,以及替代脂肪酸底物如何在COX活性位点结合。我们进一步研究了非甾体抗炎药如何与cox相互作用,以及COX-2结构的差异如何导致对COX-2抑制剂的选择性增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The structure of mammalian cyclooxygenases.

Cyclooxygenases-1 and -2 (COX-1 and COX-2, also known as prostaglandin H2 synthases-1 and -2) catalyze the committed step in prostaglandin synthesis. COX-1 and -2 are of particular interest because they are the major targets of nonsteroidal antiinflammatory drugs (NSAIDs) including aspirin, ibuprofen, and the new COX-2-selective inhibitors. Inhibition of the COXs with NSAIDs acutely reduces inflammation, pain, and fever, and long-term use of these drugs reduces the incidence of fatal thrombotic events, as well as the development of colon cancer and Alzheimer's disease. In this review, we examine how the structures of COXs relate mechanistically to cyclooxygenase and peroxidase catalysis and how alternative fatty acid substrates bind within the COX active site. We further examine how NSAIDs interact with COXs and how differences in the structure of COX-2 result in enhanced selectivity toward COX-2 inhibitors.

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