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Aloxe3 敲除小鼠揭示了表皮脂氧合酶-3 作为海鞘素合酶的功能及其在屏障形成中的关键作用。

Aloxe3 knockout mice reveal a function of epidermal lipoxygenase-3 as hepoxilin synthase and its pivotal role in barrier formation.

机构信息

Genome Modifications and Carcinogenesis, German Cancer Research Center, Heidelberg, Germany.

出版信息

J Invest Dermatol. 2013 Jan;133(1):172-80. doi: 10.1038/jid.2012.250. Epub 2012 Jul 26.

DOI:10.1038/jid.2012.250
PMID:22832496
Abstract

Loss-of-function mutations in the lipoxygenase (LOX) genes ALOX12B and ALOXE3 are the second most common cause of autosomal recessive congenital ichthyosis. The encoded proteins, 12R-LOX and epidermal LOX-3 (eLOX-3), act in sequence to convert fatty acid substrates via R-hydroperoxides to specific epoxyalcohol derivatives and have been proposed to operate in the same metabolic pathway during epidermal barrier formation. Here, we show that eLOX-3 deficiency in mice results in early postnatal death, associated with similar but somewhat less severe barrier defects and morphological changes than reported earlier for the 12R-LOX-knockout mice. Skin lipid analysis demonstrated that the severity of barrier failure is related to the loss of covalently bound ceramides in both 12R-LOX- and eLOX-3-null mice, confirming a proposed functional linkage of the LOX pathway to ceramide processing and formation of the corneocyte lipid envelope. Furthermore, analysis of free oxygenated fatty acid metabolites revealed strongly reduced levels of hepoxilin metabolites in eLOX-3-deficient epidermis, indicating an additional function of eLOX-3 in mammalian skin as a hepoxilin synthase linked to the 12S-LOX pathway.

摘要

脂氧合酶(LOX)基因 ALOX12B 和 ALOXE3 的功能丧失突变是常染色体隐性先天性鱼鳞病的第二大常见原因。编码的蛋白质 12R-LOX 和表皮 LOX-3(eLOX-3)依次作用,将脂肪酸底物通过 R-氢过氧化物转化为特定的环氧化醇衍生物,并被提出在表皮屏障形成过程中在同一代谢途径中发挥作用。在这里,我们表明,eLOX-3 缺乏的小鼠在出生后不久就会死亡,与之前报道的 12R-LOX 基因敲除小鼠相比,具有类似但稍不严重的屏障缺陷和形态变化。皮肤脂质分析表明,屏障失效的严重程度与共价结合的神经酰胺在 12R-LOX 和 eLOX-3 缺失的小鼠中丢失有关,这证实了 LOX 途径与神经酰胺加工和形成角蛋白细胞脂质包膜的功能联系。此外,游离氧合脂肪酸代谢物的分析表明,eLOX-3 缺陷表皮中 hepoxilin 代谢物的水平明显降低,表明 eLOX-3 在哺乳动物皮肤中具有作为与 12S-LOX 途径相关的 hepoxilin 合酶的额外功能。

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