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2-羟酰基辅酶 A 裂解酶 HACL2 在体内α-氧化途径中生成奇数链脂肪酸的作用。

Role of 2-hydroxy acyl-CoA lyase HACL2 in odd-chain fatty acid production via α-oxidation in vivo.

机构信息

Laboratory of Biochemistry, Faculty of Pharmaceutical Sciences, Hokkaido University, Sapporo 060-0812, Japan.

出版信息

Mol Biol Cell. 2023 Aug 1;34(9):ar85. doi: 10.1091/mbc.E23-02-0042. Epub 2023 Jun 7.

Abstract

Although most fatty acids (FAs) are even chain, certain tissues, including brain, contain relatively large quantities of odd-chain FAs in their sphingolipids. One of the pathways producing odd-chain FAs is the α-oxidation of 2-hydroxy (2-OH) FAs, where 2-OH acyl-CoA lyases (HACL1 and HACL2) catalyze the key cleavage reaction. However, the contribution of each HACL to odd-chain FA production in vivo remains unknown. Here, we found that HACL2 and HACL1 play major roles in the α-oxidation of 2-OH FAs (especially very-long-chain types) and 3-methyl FAs (other α-oxidation substrates), respectively, using ectopic expression systems of human and in yeast and analyzing and/or knockout (KO) CHO-K1 cells. We then generated KO mice and measured the quantities of odd-chain and 2-OH lipids (free FAs and sphingolipids [ceramides, sphingomyelins, and monohexosylceramides]) in 17 tissues. We observed fewer odd-chain lipids and more 2-OH lipids in many tissues of KO mice than in wild-type mice, and of these differences the reductions were most prominent for odd-chain monohexosylceramides in the brain and ceramides in the stomach. These results indicate that HACL2-involved α-oxidation of 2-OH FAs is mainly responsible for odd-chain FA production in the brain and stomach.

摘要

虽然大多数脂肪酸(FAs)都是偶数链的,但包括大脑在内的某些组织的鞘脂中含有相对大量的奇数链 FAs。产生奇数链 FAs 的途径之一是 2-羟(2-OH)FA 的α-氧化,其中 2-OH 酰基辅酶 A 裂解酶(HACL1 和 HACL2)催化关键的裂解反应。然而,每种 HACL 在体内对奇数链 FA 生成的贡献仍然未知。在这里,我们使用人和酵母中的异位表达系统,分析了 和/或 敲除(KO)CHO-K1 细胞,发现 HACL2 和 HACL1 分别在 2-OH FAs(尤其是超长链类型)和 3-甲基 FAs(其他 α-氧化底物)的α-氧化中起主要作用。然后,我们生成了 KO 小鼠,并测量了 17 种组织中的奇数链和 2-OH 脂质(游离 FAs 和鞘脂[神经酰胺、鞘磷脂和单己糖神经酰胺])的数量。我们观察到 KO 小鼠的许多组织中的奇数链脂质较少,2-OH 脂质较多,其中大脑中的奇数链单己糖神经酰胺和胃中的神经酰胺减少最为明显。这些结果表明,HACL2 参与的 2-OH FAs 的α-氧化主要负责大脑和胃中奇数链 FA 的生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4fa/10398889/a24eeaac467c/mbc-34-ar85-g001.jpg

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