Department of Medicine, Vanderbilt University Medical Center, Nashville, TN 37232
Department of Biochemistry, UT Southwestern Medical Center, Dallas, TX 75390
J Lipid Res. 2018 Nov;59(11):2047-2062. doi: 10.1194/jlr.R087882. Epub 2018 Aug 28.
The initial studies of the metabolism of arachidonic acid (AA) by the cytochrome P450 (P450) hemeproteins sought to: ) elucidate the roles for these enzymes in the metabolism of endogenous pools of the FA, ) identify the P450 isoforms involved in AA epoxidation and ω/ω-1 hydroxylation, and ) explore the biological activities of their metabolites. These early investigations provided a foundation for subsequent efforts to establish the physiological relevance of the AA monooxygenase and its contributions to the pathophysiology of, for example, cancer, diabetes, hypertension, inflammation, nociception, and vascular disease. This retrospective analyzes the history of some of these efforts, with emphasis on genetic studies that identified roles for the murine and genes in renal and vascular physiology and the pathophysiology of hypertension and cancer. Wide-ranging investigations by laboratories worldwide, including the authors, have established a better appreciation of the enzymology, genetics, and physiologic roles for what is now known as the third branch of the AA cascade. Combined with the development of analytical and pharmacological tools, including robust synthetic agonists and antagonists of the major metabolites, we stand at the threshold of novel therapeutic approaches for the treatment of renal injury, pain, hypertension, and heart disease.
最初对细胞色素 P450(P450)血红素蛋白中环氧化酶(AA)代谢的研究旨在:阐明这些酶在 FA 内源性池代谢中的作用;鉴定参与 AA 环氧化和 ω/ω-1 羟化的 P450 同工型;探讨其代谢产物的生物学活性。这些早期的研究为随后的努力奠定了基础,这些努力旨在确定 AA 单加氧酶的生理相关性及其对癌症、糖尿病、高血压、炎症、疼痛和血管疾病等病理生理学的贡献。本文回顾性分析了其中一些研究的历史,重点介绍了基因研究,这些研究确定了鼠和基因在肾脏和血管生理学以及高血压和癌症病理生理学中的作用。包括作者在内的全球实验室的广泛研究,使我们对现在被称为 AA 级联反应第三分支的酶学、遗传学和生理学作用有了更好的了解。结合分析和药理学工具的发展,包括主要代谢物的强大合成激动剂和拮抗剂,我们正处于治疗肾损伤、疼痛、高血压和心脏病的新型治疗方法的门槛。