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C20 多亚甲基间断多不饱和脂肪酸向必需脂肪酸的代谢转化。

Metabolic conversion of C20 polymethylene-interrupted polyunsaturated fatty acids to essential fatty acids.

作者信息

Tanaka Tamotsu, Uozumi Sachika, Morito Katsuya, Osumi Takashi, Tokumura Akira

出版信息

Lipids. 2014 May;49(5):423-9. doi: 10.1007/s11745-014-3896-5.

Abstract

Polymethylene-interrupted (PMI)-polyunsaturated fatty acids (PUFA) are fatty acids present largely in gymnosperm. Sciadonic acid (SciA, 20:3 Δ-5,11,14) and juniperonic acid (JA, 20:4 Δ-5,11,14,17) are typical C20 PMI-PUFA with an isolated double bond at Δ5. Previously, we found that SciA and JA are converted to linoleic acid (LNA) and α-linolenic acid (ΑLA), respectively. The conversion process includes chain-shortening step by peroxisomal β-oxidation for elimination a double bond at Δ5, and subsequent chain-elongation step in microsomes. In this study, we examined the substrate specificity of this metabolism in rodent and human cells. Supplementation of SciA, eicosadienoic acid (EDA, 20:2 Δ-11,14) or JA to CHO-K1 cells (wild type) induced an accumulation of LNA, LNA or ALA, respectively, in cellular lipids. These changes were not observed in the peroxisomes-deficient CHO cells, indicating involvement of peroxisomes in the metabolism. Two types of human cells (MKN74 and HepG2) also converted the C20 PMI-PUFA and EDA to the respective essential fatty acids. In contrast, no chain-shortened metabolite of pinolenic acid (18:3 Δ-5,9,12) was detected in any cell lines tested. From these results, C20 PMI-PUFA and EDA, but not C18 PMI-PUFA, are suggested as being effectively converted to essential fatty acids by the fatty acid remodeling system in rodent and human cells.

摘要

聚亚甲基间断(PMI)-多不饱和脂肪酸(PUFA)主要存在于裸子植物中。二十二碳三烯酸(SciA,20:3 Δ-5,11,14)和杜松酸(JA,20:4 Δ-5,11,14,17)是典型的C20 PMI-PUFA,在Δ5处有一个孤立的双键。此前,我们发现SciA和JA分别转化为亚油酸(LNA)和α-亚麻酸(ALA)。转化过程包括通过过氧化物酶体β-氧化进行链缩短步骤以消除Δ5处的双键,以及随后在微粒体中的链延长步骤。在本研究中,我们研究了这种代谢在啮齿动物和人类细胞中的底物特异性。向CHO-K1细胞(野生型)中添加SciA、二十碳二烯酸(EDA,20:2 Δ-11,14)或JA分别导致细胞脂质中LNA、LNA或ALA的积累。在缺乏过氧化物酶体的CHO细胞中未观察到这些变化,表明过氧化物酶体参与了该代谢过程。两种人类细胞(MKN74和HepG2)也将C20 PMI-PUFA和EDA转化为各自的必需脂肪酸。相比之下 在任何测试的细胞系中均未检测到松油酸(18:3 Δ-5,9,12)的链缩短代谢产物。从这些结果来看,C20 PMI-PUFA和EDA而非C18 PMI-PUFA被认为可通过啮齿动物和人类细胞中的脂肪酸重塑系统有效转化为必需脂肪酸。

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