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双功能 DEGS2 在非常长链脂肪酸底物的植物神经酰胺生产中具有更高的羟化酶活性。

Bifunctional DEGS2 has higher hydroxylase activity toward substrates with very-long-chain fatty acids in the production of phytosphingosine ceramides.

机构信息

Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo, Japan.

Department of Pathophysiology and Metabolism, Kawasaki Medical School, Okayama, Japan.

出版信息

J Biol Chem. 2023 Apr;299(4):104603. doi: 10.1016/j.jbc.2023.104603. Epub 2023 Mar 11.

Abstract

Phytosphingosine (PHS) is a sphingolipid component present mainly in epithelial tissues, including the epidermis and those lining the digestive tract. DEGS2 is a bifunctional enzyme that produces ceramides (CERs) containing PHS (PHS-CERs) via hydroxylation and sphingosine-CERs via desaturation, using dihydrosphingosine-CERs as substrates. Until now, the role of DEGS2 in permeability barrier functioning, its contribution to PHS-CER production, and the mechanism that differentiates between these two activities have been unknown. Here, we analyzed the barrier functioning of the epidermis, esophagus, and anterior stomach of Degs2 KO mice and found that there were no differences between Degs2 KO and WT mice, indicating normal permeability barriers in the KO mice. In the epidermis, esophagus, and anterior stomach of Degs2 KO mice, PHS-CER levels were greatly reduced relative to WT mice, but PHS-CERs were still present. We obtained similar results for DEGS2 KO human keratinocytes. These results indicate that although DEGS2 plays a major role in PHS-CER production, another synthesis pathway exists as well. Next, we examined the fatty acid (FA) composition of PHS-CERs in various mouse tissues and found that PHS-CER species containing very-long-chain FAs (≥C21) were more abundant than those containing long-chain FAs (C11-C20). A cell-based assay system revealed that the desaturase and hydroxylase activities of DEGS2 toward substrates with different FA chain lengths differed and that its hydroxylase activity was higher toward substrates containing very-long-chain FAs. Collectively, our findings contribute to the elucidation of the molecular mechanism of PHS-CER production.

摘要

植物鞘氨醇(PHS)是一种主要存在于上皮组织中的神经鞘脂成分,包括表皮和消化道内层。DEGS2 是一种双功能酶,可通过羟化作用产生含有 PHS(PHS-CERs)的神经酰胺(CERs),并通过去饱和作用产生神经鞘氨醇-CERs,以二氢神经鞘氨醇-CERs 作为底物。到目前为止,DEGS2 在渗透性屏障功能中的作用、其对 PHS-CER 产生的贡献以及区分这两种活性的机制尚不清楚。在这里,我们分析了 Degs2 KO 小鼠的表皮、食管和前胃的屏障功能,发现 Degs2 KO 小鼠与 WT 小鼠之间没有差异,表明 KO 小鼠的渗透性屏障正常。在 Degs2 KO 小鼠的表皮、食管和前胃中,PHS-CER 水平相对于 WT 小鼠大大降低,但 PHS-CER 仍然存在。我们对 DEGS2 KO 人角质形成细胞也获得了类似的结果。这些结果表明,尽管 DEGS2 在 PHS-CER 产生中起主要作用,但也存在另一种合成途径。接下来,我们检查了各种小鼠组织中 PHS-CER 的脂肪酸(FA)组成,发现含有超长链 FA(≥C21)的 PHS-CER 物种比含有长链 FA(C11-C20)的 PHS-CER 物种更丰富。基于细胞的测定系统表明,DEGS2 对具有不同 FA 链长的底物的去饱和酶和羟化酶活性不同,其羟化酶活性对含有超长链 FA 的底物更高。总之,我们的研究结果有助于阐明 PHS-CER 产生的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2ed/10140171/cfda57ebdd16/gr1.jpg

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