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首页> 外文期刊>Aquaculture >Physiological roles of fatty acyl desaturases and elongases in marine fish: Characterisation of cDNAs of fatty acyl Delta 6 desaturase and elovl5 elongase of cobia (Rachycentron canadum)
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Physiological roles of fatty acyl desaturases and elongases in marine fish: Characterisation of cDNAs of fatty acyl Delta 6 desaturase and elovl5 elongase of cobia (Rachycentron canadum)

机译:海水鱼类中脂肪酰基去饱和酶和延伸酶的生理作用:军曹鱼脂肪酰基Delta 6去饱和酶和elovl5延伸酶的cDNA表征

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In the present paper, we investigated the expression of fatty acyl desaturase and elongase genes in a marine teleost, cobia, a species of great interest due to its considerable aquaculture potential. A cDNA was cloned that, when expressed in yeast, was shown to result in desaturation of 18:3n-3 and 18:2n-6, indicating that it coded for a Delta 6 desaturase enzyme. Very low desaturation of 20:4n-3 and 20:3n-6 indicated only trace Delta 5 activity. Another cloned cDNA enabled elongation of 18:4n-3, 18:3n-6, 20:5n-3 and 20:4n-6 in the yeast expression system, indicating that it had C18-20 and C20-22 elongase activity. Sequence comparison and phylogenetic analysis confirmed that it was homologous to human ELOVL5 elongase. However, the cobia Elovl5 elongase also had low activity toward C24 HUFA. The cobia Delta 6 desaturase had a preference for 18:3n-3, but the elongase was generally equally active with both n-3 and n-6 substrates. Expression of both genes was 1-2 orders of magnitude greater in brain than other tissues suggesting an important role, possibly to ensure sufficient docosahexaenoic acid (DHA, 22:6n-3) synthesis in neural tissues through elongation and desaturation of eicosapentaenoic acid (EPA; 20:5n-3).
机译:在本文中,我们研究了硬骨制硬骨鱼中的脂肪酰基去饱和酶和延伸酶基因的表达,该物种由于其巨大的水产养殖潜力而备受关注。克隆了一个cDNA,该cDNA在酵母中表达时显示可导致18:3n-3和18:2n-6脱饱和,表明它编码了Delta 6脱氢酶。 20:4n-3和20:3n-6的极低去饱和度表明仅存在痕量Delta 5活性。另一个克隆的cDNA在酵母表达系统中能够延长18:4n-3、18:3n-6、20:5n-3和20:4n-6,表明它具有C18-20和C20-22延长酶活性。序列比较和系统发育分析证实,它与人ELOVL5延伸酶同源。但是,军曹鱼Elov15延伸酶对C24 HUFA的活性也较低。军曹鱼Delta 6去饱和酶的优先级为18:3n-3,但延长酶通常对n-3和n-6底物均具有同等活性。两种基因在大脑中的表达均比其他组织高1-2个数量级,表明它发挥了重要作用,可能通过二十碳五烯酸(EPA)的延伸和去饱和来确保神经组织中足够的二十二碳六烯酸(DHA,22:6n-3)合成; 20:5n-3)。

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