首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Mutation of a Critical Arginine in Microsomal Prostaglandin E Synthase-1 Shifts the Isomerase Activity to a Reductase Activity That Converts Prostaglandin H2 into Prostaglandin F2α
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Mutation of a Critical Arginine in Microsomal Prostaglandin E Synthase-1 Shifts the Isomerase Activity to a Reductase Activity That Converts Prostaglandin H2 into Prostaglandin F2α

机译:微粒体前列腺素E合酶1中的关键精氨酸的突变。 将异构酶活性转变为可转化的还原酶活性 前列腺素H2转化为前列腺素 F2α

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摘要

Microsomal prostaglandin E synthase type 1 (mPGES-1) converts prostaglandin endoperoxides, generated from arachidonic acid by cyclooxygenases, into prostaglandin E2. This enzyme belongs to the membrane-associated proteins in eicosanoid and glutathione metabolism (MAPEG) family of integral membrane proteins, and because of its link to inflammatory conditions and preferential coupling to cyclooxygenase 2, it has received considerable attention as a drug target. Based on the high resolution crystal structure of human leukotriene C4 synthase, a model of mPGES-1 has been constructed in which the tripeptide co-substrate glutathione is bound in a horseshoe-shaped conformation with its thiol group positioned in close proximity to Arg-126. Mutation of Arg-126 into an Ala or Gln strongly reduces the enzyme's prostaglandin E synthase activity (85–95%), whereas mutation of a neighboring Arg-122 does not have any significant effect. Interestingly, R126A and R126Q mPGES-1 exhibit a novel, glutathione-dependent, reductase activity, which allows conversion of prostaglandin H2 into prostaglandin F2α. Our data show that Arg-126 is a catalytic residue in mPGES-1 and suggest that MAPEG enzymes share significant structural components of their active sites.
机译:1型微粒体前列腺素E合酶(mPGES-1)将花生四烯酸通过环加氧酶产生的前列腺素内过氧化物转化为前列腺素E2。该酶属于类花生酸和谷胱甘肽代谢(MAPEG)整体膜蛋白家族中的膜相关蛋白,由于其与炎症性疾病相关联并且优先与环加氧酶2偶联,因此作为药物靶标受到了广泛关注。根据人白三烯C4合酶的高分辨率晶体结构,构建了mPGES-1模型,其中三肽共底物谷胱甘肽以马蹄形构象结合,其巯基紧邻Arg-126。 。将Arg-126突变为Ala或Gln会大大降低酶的前列腺素E合酶活性(85–95%),而相邻的Arg-122突变则没有任何显着影响。有趣的是,R126A和R126Q mPGES-1具有新颖的,依赖谷胱甘肽的还原酶活性,可将前列腺素H2转化为前列腺素F2α。我们的数据表明Arg-126是mPGES-1中的催化残基,表明MAPEG酶具有重要的共享作用。 其活动站点的结构组件。

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