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从分子和结构角度梳理 5-脂氧合酶衍生产物的脉络:促炎和抗炎脂质介质之间的斗争。

Untangling the web of 5-lipoxygenase-derived products from a molecular and structural perspective: The battle between pro- and anti-inflammatory lipid mediators.

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, LA, USA.

Department of Biological Sciences, Louisiana State University, Baton Rouge, LA, USA.

出版信息

Biochem Pharmacol. 2021 Nov;193:114759. doi: 10.1016/j.bcp.2021.114759. Epub 2021 Sep 3.

Abstract

Arachidonic acid (AA) is the precursor to leukotrienes (LT), potent mediators of the inflammatory response. In the 35 + years since cysteinyl-LTs were reported to mediate antigen-induced constriction of bronchi in tissue from asthma patients, numerous cellular responses evoked by the LTs, such as chemoattraction and G protein-coupled receptor (GPCR) activation, have been elucidated and revealed a potential for 5-lipoxygenase (5-LOX) as a promising drug target that goes beyond asthma. We describe herein early work identifying 5-LOX as the key enzyme that initiates LT biosynthesis and the discovery of its membrane-embedded helper protein required to execute the two-step reaction that transforms AA to the progenitor leukotriene A (LTA). 5-LOX must traffic to the nuclear membrane to interact with its partner and undergo a conformational change so that AA can enter the active site. Additionally, the enzyme must retain the hydroperoxy-reaction intermediate for its final transformation to LTA. Each of these steps provide a unique target for inhibition. Next, we describe the recent structures of GPCRs that recognize metabolites of the 5-LOX pathway and thus provide target alternatives. We also highlight the role of 5-LOX in the biosynthesis of anti-inflammatory lipid mediators (LM), the so-called specialized pro-resolving mediators (SPM). The involvement of 5-LOX in the biosynthesis of LM with opposing functions undoubtedly complicates the continuing search for 5-LOX inhibitors as therapeutic leads. Finally, we address the recent discovery of how some allosteric 5-LOX inhibitors promote oxygenation at the 12/15 carbon on AA to generate mediators that resolve, rather than promote, inflammation.

摘要

花生四烯酸(AA)是白三烯(LT)的前体,是炎症反应的有力介质。自半胱氨酰-LT 被报道介导哮喘患者组织中抗原诱导的支气管收缩以来,已有 35 多年的历史,LT 引起的许多细胞反应,如趋化作用和 G 蛋白偶联受体(GPCR)激活,已经阐明,并揭示了 5-脂氧合酶(5-LOX)作为一个有希望的药物靶点的潜力,超出了哮喘的范围。本文描述了早期工作,确定 5-LOX 是启动 LT 生物合成的关键酶,以及发现其膜嵌入辅助蛋白,该蛋白需要执行将 AA 转化为前体白三烯 A(LTA)的两步反应。5-LOX 必须转运到核膜与它的伴侣相互作用,并发生构象变化,以便 AA 可以进入活性位点。此外,该酶必须保留过氧化物反应中间体,以便其最终转化为 LTA。这些步骤中的每一步都为抑制提供了一个独特的靶点。接下来,我们描述了最近识别识别 5-LOX 途径代谢产物的 GPCR 的结构,从而提供了替代靶标。我们还强调了 5-LOX 在合成具有抗炎作用的脂质介质(LM)中的作用,即所谓的特殊促解决介质(SPM)。5-LOX 在具有相反功能的 LM 生物合成中的参与无疑使继续寻找 5-LOX 抑制剂作为治疗先导复杂化。最后,我们将讨论最近发现的一些变构 5-LOX 抑制剂如何促进 AA 上的 12/15 碳的氧化,生成解决而不是促进炎症的介质。

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