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Delta-8 desaturation activity varies among fatty acyl desaturases of teleost fish: high activity in delta-6 desaturases of marine species

机译:硬骨鱼的脂肪酰基脱氢酶之间的Delta-8脱饱和活性不同:海洋物种的Delta-6脱饱和酶的活性较高

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摘要

The benefits of dietary fish and fish oil are derived from n-3 long-chain polyunsaturated fatty acids (LC-PUFA) that have beneficial effects in a range of human diseases and pathologies such as cardiovascular and other inflammatory disorders, neural development and neurological pathologies. The precursor of n-3 LC-PUFA, 18:3n-3 does not have the same beneficial effects prompting interest in the pathways of endogenous synthesis of LC-PUFA in vertebrates. The LC-PUFA biosynthesis pathway classically involves Δ6 and Δ5 fatty acyl desaturases (Fad), but it was recently shown that Δ6 Fad in mammals also displayed Δ8 activity demonstrating a possible alternative “Δ8-pathway” for the synthesis of LC-PUFA. Our primary hypothesis was that Δ8 desaturase activity would be a common feature of vertebrate Δ6 Fads, and so the aim of the present study was to determine the ability of teleostei Fads for Δ8 desaturation activity. To this end, cDNAs for Fads from a range of freshwater, diadromous and marine teleost fish species were assayed for Δ8 activity in the heterologous yeast expression system. In summary, the present study has demonstrated that Δ8 desaturation activity was also a characteristic of fish orthologs, although the activity varied notably between freshwater/diadromous and marine fish species, with the latter possessing Fads2-like proteins with Δ8 activity far higher than mammalian FADS2. The data showed that, generally, the fish Fad are technically υ-3 desaturases, with new double bonds introduced 3C beyond a pre-existing double bond. However, the ability of zebrafish and rabbitfish Fads, previously characterised as Δ6/Δ5 bifunctional desaturases, to introduce non-methylene interrupted double bonds in 20:3n-3 and 20:2n-6 suggested that a novel combination of regioselectivity modes operates within these enzymes.
机译:膳食鱼和鱼油的益处来自n-3个长链多不饱和脂肪酸(LC-PUFA),它对一系列人类疾病和病理如心血管疾病和其他炎性疾病,神经发育和神经病理学具有有益作用。 n-3 LC-PUFA的前体18:3n-3没有相同的有益作用,从而引起了人们对脊椎动物内源性LC-PUFA合成途径的兴趣。 LC-PUFA的生物合成途径经典地涉及Δ6和Δ5脂肪酰基去饱和酶(Fad),但最近显示,哺乳动物中的Δ6Fad也表现出Δ8活性,表明了LC-PUFA合成的可能替代“Δ8途径”。我们的主要假设是,Δ8去饱和酶活性将是脊椎动物Δ6Fads的共同特征,因此,本研究的目的是确定硬骨鱼Fads具有Δ8去饱和活性的能力。为此,在异源酵母表达系统中测定了来自一系列淡水,双水生和海洋硬骨鱼物种的Fads cDNA的Δ8活性。总而言之,本研究表明,Δ8去饱和活性也是鱼类直系同源物的一个特征,尽管该活性在淡水/渗水和海水鱼类之间显着变化,后者具有Fads2样蛋白,其Δ8活性远高于哺乳动物FADS2。 。数据显示,一般而言,鱼Fad从技术上讲是υ-3去饱和酶,除了先前存在的双键外,还引入了新的双键3C。然而,斑马鱼和兔子鱼Fads(以前被称为Δ6/Δ5双功能去饱和酶)在20:3n-3和20:2n-6中引入非亚甲基中断的双键的能力表明,在这些区域中,区域选择性模式的新颖组合发挥了作用酶。

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