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长链多不饱和脂肪酸和超长链多不饱和脂肪酸在:Elovl4 延长酶的特性及急性盐度胁迫下的调控

Biosynthesis of LC-PUFAs and VLC-PUFAs in : Characterization of Elovl4 Elongases and Regulation under Acute Salinity.

机构信息

Laboratory of Fish and Shellfish Nutrition, School of Marine Sciences, Ningbo University, Ningbo 315211, China.

Instituto de Acuicultura Torre de la Sal (IATS-CSIC), Ribera de Cabanes 12595, Castellón, Spain.

出版信息

J Agric Food Chem. 2021 Jan 27;69(3):932-944. doi: 10.1021/acs.jafc.0c06277. Epub 2021 Jan 12.

Abstract

Salinity has been demonstrated to influence the biosynthesis of long-chain (C) polyunsaturated fatty acids (LC-PUFAs) in teleost fish. Since LC-PUFAs are essential nutrients for vertebrates, it is central to understand how fish cope with an acute change in salinity associated with natural events. We herein report on the cloning and functional characterization of two elongation of very-long-chain fatty acid (Elovl)4 proteins, namely, Elovl4a and Elovl4b, and study the roles that these enzymes play in the biosynthesis of LC-PUFAs and very-long-chain (>C) polyunsaturated fatty acids (VLC-PUFAs) in marine teleost . The Elovl4 displayed all of the typical features of Elovl-like enzymes and have eyes and brain as major sites through which they exert their functions. Moreover, functional studies showed that the Elovl4 can effectively elongate C substrates to C VLC-PUFA. Because both Elovl4 are able to produce 24:5 - 3 from shorter precursors, we tested whether the previously reported Δ6 Fads2 from was able to desaturate 24:5 - 3 to 24:6 - 3, a key step for docosahexaenoic acid (DHA) synthesis. Our results showed that can indeed bioconvert 24:5 - 3 into 24:6 - 3, suggesting that has the enzymatic capacity required for DHA biosynthesis through the coordinated action of both Elovl4 and Fads2. Furthermore, an acute salinity test indicated that low-salinity stress (12 ppt) upregulated genes involved in LC-PUFA biosynthesis, with 12 ppt salinity treatment showing the highest hepatic LC-PUFA content. Overall, our results unveiled that the newly characterized Elovl4 enzymes have indispensable functions in LC- and VLC-PUFA biosynthesis. Moreover, acute salinity change influenced the biosynthesis of LC-PUFA in . This study provided new insight into the biosynthesis of LC- and VLC-PUFAs in vertebrates and the physiological responses that teleosts have under acute salinity stress.

摘要

盐度已被证明会影响硬骨鱼类长链(C)多不饱和脂肪酸(LC-PUFA)的生物合成。由于 LC-PUFA 是脊椎动物的必需营养物质,因此了解鱼类如何应对与自然事件相关的急性盐度变化至关重要。本文报道了两种伸长非常长链脂肪酸(Elovl)4 蛋白,即 Elovl4a 和 Elovl4b 的克隆和功能特征,并研究了这些酶在海洋硬骨鱼 LC-PUFA 和非常长链(>C)多不饱和脂肪酸(VLC-PUFA)生物合成中的作用。Elovl4 表现出 Elovl 样酶的所有典型特征,并且眼睛和大脑是它们发挥作用的主要部位。此外,功能研究表明,Elovl4 可以有效地将 C 底物伸长到 C VLC-PUFA。由于两种 Elovl4 都能够从较短的前体中产生 24:5 - 3,我们测试了先前报道的来自 的 Δ6 Fads2 是否能够将 24:5 - 3 去饱和为 24:6 - 3,这是二十二碳六烯酸(DHA)合成的关键步骤。我们的结果表明,确实可以将 24:5 - 3 生物转化为 24:6 - 3,这表明通过 Elovl4 和 Fads2 的协调作用,具有合成 DHA 的酶学能力。此外,急性盐度试验表明,低盐度应激(12 ppt)上调了 LC-PUFA 生物合成相关基因的表达,12 ppt 盐度处理显示肝 LC-PUFA 含量最高。总的来说,我们的结果揭示了新鉴定的 Elovl4 酶在 LC-和 VLC-PUFA 生物合成中具有不可或缺的功能。此外,急性盐度变化影响了硬骨鱼 LC-PUFA 的生物合成。这项研究为脊椎动物 LC-和 VLC-PUFA 的生物合成以及硬骨鱼在急性盐度应激下的生理反应提供了新的见解。

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