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环氧水解酶 3 (Ephx3) 基因缺失减少神经酰胺亚油酸环氧化物水解,并损害皮肤屏障功能。

Epoxide hydrolase 3 (Ephx3) gene disruption reduces ceramide linoleate epoxide hydrolysis and impairs skin barrier function.

机构信息

Division of Intramural Research, NIEHS/NIH, Research Triangle Park, North Carolina, USA.

Department of Pharmacology and the Vanderbilt Institute of Chemical Biology, Vanderbilt University School of Medicine, Nashville, Tennessee, USA; Department of Dermatology and Allergology, Juntendo University Graduate School of Medicine, Bunkyo-ku, Tokyo, Japan.

出版信息

J Biol Chem. 2021 Jan-Jun;296:100198. doi: 10.1074/jbc.RA120.016570. Epub 2021 Jan 21.

Abstract

The mammalian epoxide hydrolase (EPHX)3 is known from in vitro experiments to efficiently hydrolyze the linoleate epoxides 9,10-epoxyoctadecamonoenoic acid (EpOME) and epoxyalcohol 9R,10R-trans-epoxy-11E-13R-hydroxy-octadecenoate to corresponding diols and triols, respectively. Herein we examined the physiological relevance of EPHX3 to hydrolysis of both substrates in vivo. Ephx3 mice show no deficiency in EpOME-derived plasma diols, discounting a role for EPHX3 in their formation, whereas epoxyalcohol-derived triols esterified in acylceramides of the epidermal 12R-lipoxygenase pathway are reduced. Although the Ephx3 pups appear normal, measurements of transepidermal water loss detected a modest and statistically significant increase compared with the wild-type or heterozygote mice, reflecting a skin barrier impairment that was not evident in the knockouts of mouse microsomal (EPHX1/microsomal epoxide hydrolase) or soluble (EPHX2/sEH). This barrier phenotype in the Ephx3 pups was associated with a significant decrease in the covalently bound ceramides in the epidermis (40% reduction, p < 0.05), indicating a corresponding structural impairment in the integrity of the water barrier. Quantitative LC-MS analysis of the esterified linoleate-derived triols in the murine epidermis revealed a marked and isomer-specific reduction (∼85%) in the Ephx3 epidermis of the major trihydroxy isomer 9R,10S,13R-trihydroxy-11E-octadecenoate. We conclude that EPHX3 (and not EPHX1 or EPHX2) catalyzes hydrolysis of the 12R-LOX/eLOX3-derived epoxyalcohol esterified in acylceramide and may function to control flux through the alternative and crucial route of metabolism via the dehydrogenation pathway of SDR9C7. Importantly, our findings also identify a functional role for EPHX3 in transformation of a naturally esterified epoxide substrate, pointing to its potential contribution in other tissues.

摘要

哺乳动物环氧化物水解酶(EPHX)3 从体外实验可知能有效水解亚油酸环氧化物 9,10-环氧十八碳单烯酸(EpOME)和环氧化物醇 9R,10R-反式-环氧-11E-13R-羟基-十八碳烯酸,分别生成相应的二醇和三醇。在此,我们研究了 EPHX3 在体内对两种底物水解的生理相关性。 Ephx3 小鼠的 EpOME 衍生血浆二醇没有缺乏,排除了 EPHX3 在其形成中的作用,而环氧醇衍生的三醇酯化在 12R-脂氧合酶途径的酰基神经酰胺中则减少。尽管 Ephx3 幼鼠外观正常,但与野生型或杂合子小鼠相比,经皮水分丢失的测量值显示出适度且具有统计学意义的增加,反映了皮肤屏障受损,但在小鼠微粒体(EPHX1/微粒体环氧化物水解酶)或可溶性(EPHX2/sEH)的基因敲除中则没有明显。 Ephx3 幼鼠的这种屏障表型与表皮中共价结合神经酰胺显著减少(40%,p<0.05)有关,表明水屏障完整性的相应结构受损。对小鼠表皮中酯化亚油酸衍生三醇的定量 LC-MS 分析显示,Ephx3 表皮中主要三羟异构 9R,10S,13R-三羟基-11E-十八碳烯酸的异构特异性显著减少(约 85%)。我们得出结论,EPHX3(而不是 EPHX1 或 EPHX2)催化 12R-LOX/eLOX3 衍生的酯化在酰基神经酰胺中的环氧醇水解,可能通过 SDR9C7 的脱氢途径控制代谢的替代和关键途径中的通量。重要的是,我们的发现还确定了 EPHX3 在天然酯化环氧化物底物转化中的功能作用,表明其在其他组织中的潜在贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3229/7948417/87bb239da642/gr1.jpg

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