首页> 外文OA文献 >Elongation of long-chain fatty acids in rabbitfish Siganus canaliculatus: Cloning, functional characterisation and tissue distribution of Elovl5- and Elovl4-like elongases
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Elongation of long-chain fatty acids in rabbitfish Siganus canaliculatus: Cloning, functional characterisation and tissue distribution of Elovl5- and Elovl4-like elongases

机译:兔fishSiganus canaliculatus中长链脂肪酸的延伸:Elovl5和Elovl4延伸酶的克隆,功能表征和组织分布

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摘要

Elongases of very long-chain fatty acids (Elovl) catalyse the rate-limiting step of the elongation pathway that results in net 2C elongation of pre-existing fatty acyl chains. As the biosynthesis of long-chain polyunsaturated fatty acids (LC-PUFA) is particularly relevant in fish, Elovl involved in the pathway have been investigated in various studies. Here we report the molecular cloning, functional characterisation and tissue distribution of two distinct elovl-like cDNAs isolated from the herbivorous marine teleost Siganus canaliculatus. Unlike the carnivorous marine fish previously investigated, we hypothesise that the rabbitfish has an enhanced LC-PUFA biosynthetic capability as previously anticipated in a former study on fatty acyl desaturases (Fad). The results of the present study showed that rabbitfish expresses at least two elovl cDNAs, which have high homology in sequence and function to Elovl5 and Elovl4 elongases that have been investigated previously in other fish species. Furthermore, the results confirm that the activities of the Elovl5 and Elovl4 enzymes enable rabbitfish to perform all the elongation reactions required for the biosynthesis of the physiologically essential C 20-22 LC-PUFA including eicosapentaenoic (20:5n-3), arachidonic (20:4n-6) and docosahexaenoic (22:6n-3, DHA) acids, as well as the less common very long-chain fatty acids (>C 24). Rabbitfish is thus the first marine teleost in which genes encoding Fad and Elovl enzymes, with all the activities required for the production of DHA from C 18 PUFA, have been characterised. © 2012 Elsevier B.V.
机译:极长链脂肪酸(Elovl)的延长酶催化延长途径的限速步骤,导致先前存在的脂肪酰基链的净2C延长。由于长链多不饱和脂肪酸(LC-PUFA)的生物合成在鱼类中特别重要,因此已在各种研究中研究了参与该途径的Elovl。在这里,我们报告从食草海洋硬骨鱼类Siganus canaliculatus分离的两个不同的lovel样cDNA的分子克隆,功能表征和组织分布。与先前研究的肉食性海鱼不同,我们假设兔子鱼具有增强的LC-PUFA生物合成能力,正如先前对脂肪酰基脱氢酶(Fad)的先前研究所预期的那样。本研究的结果表明,兔子鱼至少表达两种elovl cDNA,它们与先前在其他鱼类中研究过的Elovl5和Elovl4延伸酶在序列和功能上具有高度同源性。此外,结果证实Elovl5和Elovl4酶的活性使兔鱼能够进行生物合成必需的C 20-22 LC-PUFA的所有延伸反应,包括二十碳五烯酸(20:5n-3),花生四烯酸(20:5n-3) :4n-6)和二十二碳六烯酸(22:6n-3,DHA)酸,以及不太常见的超长链脂肪酸(> C 24)。因此,兔子鱼是第一个海洋硬骨鱼类,其中特征在于编码Fad和Elovl酶的基因,以及从C 18 PUFA生产DHA所需的所有活性。 ©2012 Elsevier B.V.

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