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海洋硬骨鱼日本鳀(Nibea mitsukurii)中的多不饱和脂肪酸代谢:脂肪酸去饱和酶2(Fads2)、脂肪酸延长酶5(Elovl5)和脂肪酸延长酶4(Elovl4)的功能特性

Polyunsaturated fatty acid metabolism in a marine teleost, Nibe croaker Nibea mitsukurii: Functional characterization of Fads2 desaturase and Elovl5 and Elovl4 elongases.

作者信息

Kabeya Naoki, Yamamoto Yoji, Cummins Scott F, Elizur Abigail, Yazawa Ryosuke, Takeuchi Yutaka, Haga Yutaka, Satoh Shuichi, Yoshizaki Goro

机构信息

Department of Marine Biosciences, Tokyo University of Marine Science and Technology, 4-5-7 Konan, Minato-ku, Tokyo 108-8477, Japan.

Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, 90 Sippy Downs Dr, Sippy Downs, QLD 4556, Australia.

出版信息

Comp Biochem Physiol B Biochem Mol Biol. 2015 Oct;188:37-45. doi: 10.1016/j.cbpb.2015.06.005. Epub 2015 Jun 23.

Abstract

To reduce the requirement for fish oil in marine aquaculture, it would be advantageous to endow marine fish species with the capability for the endogenous biosynthesis of eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA). For this purpose, we have previously produced transgenic Nibe croaker (Nibea mitsukurii) carrying an elongase of very-long-chain fatty acids 2 (elovl2) gene isolated from Masu salmon (Oncorhynchus masou). However, fatty acid analysis revealed that 24:5n-3 accumulated in the liver of the transgenic fish, whereas the DHA level did not differ between non-transgenic and transgenic fish. Therefore, to select more effective enzymes for successful transgenic synthesis of DHA, understanding the endogenous DHA biosynthetic pathway in the Nibe croaker is considered to be important. The present study aimed to investigate the biochemical functions of the Elovl5, Elovl4 and Fads2 enzymes involved in the DHA biosynthetic pathway in the Nibe croaker. The results showed that both Elovl5 and Elovl4 were able to elongate C18 fatty acids to C22 fatty acids and that Fads2 had Δ6 desaturase activity toward C18 fatty acids and weak Δ8 desaturase activity toward C20 fatty acids. On the other hand, Fads2 was found to lack the ability to convert 24:5n-3 to 24:6n-3, a fatty acid that can directly be converted to DHA via β-oxidation.

摘要

为减少海水养殖中对鱼油的需求,赋予海水鱼类内源性生物合成二十碳五烯酸(EPA)和二十二碳六烯酸(DHA)的能力将具有重要意义。为此,我们之前培育了携带从马苏大麻哈鱼(Oncorhynchus masou)分离得到的超长链脂肪酸延长酶2(elovl2)基因的转基因日本黄姑鱼(Nibea mitsukurii)。然而,脂肪酸分析显示转基因鱼肝脏中积累了24:5n-3,而非转基因鱼和转基因鱼之间的DHA水平并无差异。因此,为了选择更有效的酶来成功实现DHA的转基因合成,了解日本黄姑鱼内源性DHA生物合成途径被认为很重要。本研究旨在探究参与日本黄姑鱼DHA生物合成途径的Elovl5、Elovl4和Fads2酶的生化功能。结果表明,Elovl5和Elovl4均能将C₁₈脂肪酸延长为C₂₂脂肪酸,且Fads2对C₁₈脂肪酸具有Δ6去饱和酶活性,对C₂₀脂肪酸具有较弱的Δ8去饱和酶活性。另一方面,发现Fads2缺乏将24:5n-3转化为24:6n-3的能力,24:6n-3是一种可通过β-氧化直接转化为DHA的脂肪酸。

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