Monroig Óscar, de Llanos Rosa, Varó Inmaculada, Hontoria Francisco, Tocher Douglas R, Puig Sergi, Navarro Juan C
Institute of Aquaculture, Faculty of Natural Sciences, University of Stirling, Stirling FK9 4LA, Scotland, UK.
School of Applied Sciences, Edinburgh Napier University, Edinburgh EH11 4BN, Scotland, UK.
Mar Drugs. 2017 Mar 21;15(3):82. doi: 10.3390/md15030082.
Polyunsaturated fatty acids (PUFAs) have been acknowledged as essential nutrients for cephalopods but the specific PUFAs that satisfy the physiological requirements are unknown. To expand our previous investigations on characterisation of desaturases and elongases involved in the biosynthesis of PUFAs and hence determine the dietary PUFA requirements in cephalopods, this study aimed to investigate the roles that a stearoyl-CoA desaturase (Scd) and an elongation of very long-chain fatty acid 4 (Elovl4) protein play in the biosynthesis of essential fatty acids (FAs). Our results confirmed the Scd is a ∆9 desaturase with relatively high affinity towards saturated FAs with ≥ C chain lengths. Scd was unable to desaturate 20:115 (20:1) suggesting that its role in the biosynthesis of non-methylene interrupted FAs (NMI FAs) is limited to the introduction of the first unsaturation at ∆9 position. Interestingly, the previously characterised ∆5 fatty acyl desaturase was indeed able to convert 20:19 (20:1) to 20:2, an NMI FA previously detected in octopus nephridium. Additionally, Elovl4 was able to mediate the production of 24:53 and thus can contribute to docosahexaenoic acid (DHA) biosynthesis through the Sprecher pathway. Moreover, the octopus Elovl4 was confirmed to play a key role in the biosynthesis of very long-chain (>C) PUFAs.
多不饱和脂肪酸(PUFAs)已被公认为头足类动物的必需营养素,但满足其生理需求的特定PUFAs尚不清楚。为了扩展我们之前对参与PUFAs生物合成的去饱和酶和延长酶特性的研究,从而确定头足类动物的膳食PUFA需求,本研究旨在探究硬脂酰辅酶A去饱和酶(Scd)和超长链脂肪酸延长酶4(Elovl4)蛋白在必需脂肪酸(FAs)生物合成中的作用。我们的结果证实,Scd是一种对碳链长度≥的饱和脂肪酸具有较高亲和力的∆9去饱和酶。Scd无法使20:1Δ11(20:1)去饱和,这表明其在非亚甲基间断脂肪酸(NMI FAs)生物合成中的作用仅限于在∆9位置引入第一个不饱和键。有趣的是,先前鉴定的∆5脂肪酸去饱和酶确实能够将20:1Δ9(20:1)转化为20:2,这是一种先前在章鱼肾中检测到的NMI FA。此外,Elovl4能够介导24:5Δ3的产生,因此可以通过Sprecher途径促进二十二碳六烯酸(DHA)的生物合成。此外,章鱼Elovl4被证实在超长链(>C)PUFAs的生物合成中起关键作用。