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Biosynthesis of essential fatty acids in Octopus vulgaris (Cuvier, 1797): Molecular cloning, functional characterisation and tissue distribution of a fatty acyl elongase

机译:八达通中必需脂肪酸的生物合成(Cuvier,1797年):脂肪酰基延长酶的分子克隆,功能表征和组织分布

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Polyunsaturated fatty acids (PUFAs) have been identified as key nutrients for the common octopus (Octopus vulgaris), particularly for its early life-cycle stages (paralarvae). Our overarching aim is to identify the dietary essential fatty acid (FA) for octopus paralarvae through characterisation of the enzymes of endogenous PUFA biosynthetic pathways. Here we report on the molecular cloning and functional characterisation of a cDNA encoding a putative elongase of very long-chain fatty acids (Elovl), a critical enzyme that catalyses the elongation of FA including PUFA. Our results suggest that the octopus Elovl is phylogenetically related to Elovl5 and Elovl2, two elongases with demonstrated roles in PUFA biosynthesis in vertebrates. Further evidence supporting a role of the octopus Elovl in PUFA biosynthesis was provided through functional characterisation of its activity in yeast. It was confirmed that expression of the octopus Elovl conferred on yeast the ability to elongate some C18 and C20 PUFAs, while C22 PUFA substrates remained unmodified. Therefore, the substrate specificities exhibited by the octopus elongase were consistent with those of vertebrate Elovl5. Interestingly, the octopus Elovl elongated n - 6 PUFA substrates more efficiently than their homologous n - 3 substrates, suggesting that n - 6 PUFA may have particular biological significance in O. vulgaris. Finally, we investigated the potential role of the newly cloned Elovl in the biosynthesis of non-methylene-interrupted FA, compounds typically found in marine invertebrates and confirmed to be also present in the common octopus. (c) 2012 Elsevier B.V. All rights reserved.
机译:多不饱和脂肪酸(PUFA)已被确定为常见章鱼(Octopus vulgaris)的重要营养素,尤其是在其生命周期的早期阶段(幼虫)。我们的首要目标是通过表征内源性PUFA生物合成途径的酶来确定章鱼幼虫的膳食必需脂肪酸(FA)。在这里,我们报道了编码很长链脂肪酸(Elovl)的假定延伸酶的cDNA的分子克隆和功能表征,这是一种催化FA包括PUFA延伸的关键酶。我们的研究结果表明,章鱼Elov1与Elovl5和Elovl2在系统发育上相关,这两个延伸酶在脊椎动物的PUFA生物合成中具有重要作用。通过章鱼Elov1在酵母中的活性的功能表征,提供了支持章鱼Elov1在PUFA生物合成中的作用的进一步证据。已证实章鱼Elov1的表达赋予酵母延长一些C18和C20 PUFA的能力,而C22 PUFA底物保持未修饰。因此,章鱼延伸酶表现出的底物特异性与脊椎动物Elov15一致。有趣的是,章鱼Elovl比其同源的n-3底物更有效地延长了n-6 PUFA底物,这表明n-6 PUFA在寻常豆中具有特殊的生物学意义。最后,我们研究了新克隆的Elovl在非亚甲基间断FA的生物合成中的潜在作用,这些化合物通常在海洋无脊椎动物中发现并确认也存在于普通章鱼中。 (c)2012 Elsevier B.V.保留所有权利。

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