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脂氧合酶催化形成R-构型氢过氧化物。

Lipoxygenase-catalyzed formation of R-configuration hydroperoxides.

作者信息

Schneider Claus, Brash Alan R

机构信息

Division of Clinical Pharmacology, Vanderbilt University Medical School, Nashville, TN 37232-6602, USA.

出版信息

Prostaglandins Other Lipid Mediat. 2002 Aug;68-69:291-301. doi: 10.1016/s0090-6980(02)00041-2.

Abstract

Prototypical lipoxygenases (LOXs) of animals and plants synthesize hydroperoxy fatty acids of the S stereoconfiguration, yet enzymes forming R-configuration products are found in both the animal and plant kingdoms. R-LOX are widespread in aquatic invertebrates, in some of which their R-HETE products have a defined role in reproductive function. A 12R-LOX has been found recently in humans and mice. The human 12R-LOX product, 12R-HETE, appears to be involved in the pathophysiology of psoriasis and other proliferative skin diseases; a role in normal skin development is implied from the spatial and temporal expression patterns of the 12R-LOX in the mouse embryo. In plants, there are few reports of R-LOX activity and in higher plants this is limited to enzymes that catalyze a significant degree of non-specific oxygenation. There are no obvious amino acid sequence motifs characterizing R-LOXs; and in the phylogenetic tree of the LOX superfamily, the R-LOXs do not group into a specific branch of genes. The mechanistic basis of stereocontrol over the oxygenation reaction performed by LOXs may relate to a changed binding orientation of the fatty acid substrate or to the direction of attack by molecular oxygen. A potentially relevant precedent for switching of R- and S-oxygenation specificity was described recently in studies of prostaglandin C-15 oxygenation during cycloxygenase catalysis; single amino acid changes can invert the oxygenation stereospecificity at C-15. In this case, the evidence suggests that R/S switching can occur with the substrate binding in the normal conformation.

摘要

动植物的典型脂氧合酶(LOXs)合成S构型的氢过氧脂肪酸,但在动物界和植物界都发现了能形成R构型产物的酶。R-LOX广泛存在于水生无脊椎动物中,其中一些动物的R-HETE产物在生殖功能中具有明确作用。最近在人类和小鼠中发现了一种12R-LOX。人类12R-LOX的产物12R-HETE似乎参与了银屑病和其他增殖性皮肤病的病理生理过程;从小鼠胚胎中12R-LOX的时空表达模式可以推断其在正常皮肤发育中的作用。在植物中,关于R-LOX活性的报道很少,在高等植物中,这仅限于催化显著程度非特异性氧化的酶。没有明显的氨基酸序列基序来表征R-LOX;在LOX超家族的系统发育树中,R-LOX没有聚集成一个特定的基因分支。LOX进行氧化反应时立体控制的机制基础可能与脂肪酸底物结合方向的改变或分子氧攻击方向有关。最近在环氧化酶催化过程中前列腺素C-15氧化的研究中描述了一个R-和S-氧化特异性切换的潜在相关先例;单个氨基酸的变化可以使C-15处的氧化立体特异性反转。在这种情况下,证据表明R/S切换可以在底物以正常构象结合时发生。

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