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Biosynthesis of Polyunsaturated Fatty Acids in Sea Urchins: Molecular and Functional Characterisation of Three Fatty Acyl Desaturases from Paracentrotus lividus (Lamark 1816)

机译:海胆中多不饱和脂肪酸的生物合成:淡红对虾中三种脂肪酰基去饱和酶的分子和功能表征(拉马克1816)

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摘要

Sea urchins are broadly recognised as a delicacy and their quality as food for humans is highly influenced by their diet. Lipids in general and the long-chain polyunsaturated fatty acids (LC-PUFA) in particular, are essential nutrients that determine not only the nutritional value of sea urchins but also guarantee normal growth and reproduction in captivity. The contribution of endogenous production (biosynthesis) of LC-PUFA in sea urchins remained unknown. Using Paracentrotus lividus as our model species, we aimed to characterise both molecularly and functionally the repertoire of fatty acyl desaturases (Fads), key enzymes in the biosynthesis of LC-PUFA, in sea urchins. Three Fads, namely FadsA, FadsC1 and FadsC2, were characterised. The phylogenetic analyses suggested that the repertoire of Fads within the Echinodermata phylum varies among classes. On one hand, orthologues of the P. lividus FadsA were found in other echinoderm classes including starfishes, brittle stars and sea cucumbers, thus suggesting that this desaturase is virtually present in all echinoderms. Contrarily, the FadsC appears to be sea urchin-specific desaturase. Finally, a further desaturase termed as FadsB exists in starfishes, brittle stars and sea cucumbers, but appears to be missing in sea urchins. The functional characterisation of the P. lividus Fads confirmed that the FadsA was a Δ5 desaturase with activity towards saturated and polyunsaturated fatty acids (FA). Moreover, our experiments confirmed that FadsA plays a role in the biosynthesis of non-methylene interrupted FA, a group of compounds typically found in marine invertebrates. On the other hand, both FadsC desaturases from P. lividus showed Δ8 activity. The present results demonstrate that P. lividus possesses desaturases that account for all the desaturation reactions required to biosynthesis the physiological essential eicosapentaenoic and arachidonic acids through the so-called “Δ8 pathway”.
机译:海胆被广泛认为是美味佳肴,其作为人类食物的质量受饮食的影响很大。一般而言,脂质,尤其是长链多不饱和脂肪酸(LC-PUFA)是必不可少的营养素,不仅决定了海胆的营养价值,而且还保证了圈养动物的正常生长和繁殖。 LC-PUFA在海胆中内源性生产(生物合成)的贡献仍然未知。我们使用对虾假单胞菌(Paracentrotus lividus)作为我们的模型物种,旨在从分子和功能上表征海胆中LC-PUFA生物合成中的关键酶脂肪酰基去饱和酶(Fads)的组成。表征了三个Fads,即FadsA,FadsC1和FadsC2。系统发育分析表明,Echinodermata phylum中Fads的组成在不同类别之间有所不同。一方面,在其他棘皮动物类中发现了青紫假单胞菌FadsA的直向同源物,包括海星,脆性恒星和海参,因此表明该去饱和酶实际上存在于所有棘皮动物中。相反,FadsC似乎是海胆特异性去饱和酶。最后,在海星,脆性恒星和海参中还存在另一种称为FadsB的去饱和酶,但在海胆中似乎不存在。 Lividus Lividus Fads的功能特性证实FadsA是一种Δ5去饱和酶,对饱和和多不饱和脂肪酸(FA)具有活性。此外,我们的实验证实,FadsA在非亚甲基中断的FA(通常在海洋无脊椎动物中发现的一组化合物)的生物合成中发挥作用。另一方面,来自青紫假单胞菌的两个FadsC去饱和酶均显示出Δ8活性。目前的结果表明,青紫假单胞菌具有去饱和酶,该去饱和酶解释了通过所谓的“Δ8途径”生物合成生理必需二十碳五烯酸和花生四烯酸所需的所有去饱和反应。

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