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两种延伸酶(Elovl4 和 Elovl6)在中华绒螯蟹()中完成了 LC-PUFA 生物合成途径的延伸途径。

Two Elongases, Elovl4 and Elovl6, Fulfill the Elongation Routes of the LC-PUFA Biosynthesis Pathway in the Orange Mud Crab ().

机构信息

Center for Chemical Biology, Universiti Sains Malaysia, Sains@USM, Blok B No. 10, Persiaran Bukit Jambul, 11900 Bayan Lepas, Penang, Malaysia.

School of Biological Sciences, Universiti Sains Malaysia, 11800 Minden, Penang, Malaysia.

出版信息

J Agric Food Chem. 2020 Apr 8;68(14):4116-4130. doi: 10.1021/acs.jafc.9b06692. Epub 2020 Mar 30.

DOI:10.1021/acs.jafc.9b06692
PMID:32186869
Abstract

While the capacity for long-chain polyunsaturated fatty acid (LC-PUFA) biosynthesis has been elucidated in vertebrates and several invertebrate phyla, the comparative knowledge in crustaceans remains vague. A key obstacle in mapping the full spectrum of LC-PUFA biosynthesis in crustacean is the limited evidence of the functional activities of enzymes involved in desaturation or elongation of polyunsaturated fatty acid substrates. In this present study, we report on the cloning and functional characterization of two Elovl elongases from the orange mud crab, Sequence and phylogenetic analysis suggest these two Elovl as putative Elovl4 and Elovl6, respectively. Using the recombinant expression system in , we demonstrate the elongation capacity for C18-C22 PUFA substrates in the Elovl4. The Elovl6 elongated saturated fatty acids, monounsaturated fatty acids, and interestingly, C18-C20 PUFA. Taken together, both Elovl fulfill the elongation steps required for conversion of C18 PUFA to their respective LC-PUFA products. Elovl4 is expressed mainly in the hepatopancreas and gill tissues, while Elovl6 is predominant in digestive tissues. The expression of both enzymes was higher in mud crabs fed with vegetable oil-based diets. Tissue fatty acid composition also showed the existence of LC-PUFA biosynthesis intermediate products in tissues expressing these two elongases. In summary, we report here two novel Elovl with PUFA elongating activities in a marine brachyuran. This will contribute significantly to the understanding of the LC-PUFA biosynthesis pathway in crustaceans and advance the development of aquafeed for intensive farming of the mud crab.

摘要

虽然脊椎动物和几个无脊椎动物门的长链多不饱和脂肪酸 (LC-PUFA) 生物合成能力已经阐明,但甲壳类动物的比较知识仍然模糊不清。在甲壳类动物中绘制 LC-PUFA 生物合成全谱的一个关键障碍是参与多不饱和脂肪酸底物去饱和或延伸的酶的功能活性的证据有限。在本研究中,我们报告了来自橙泥蟹的两种 Elovl 延伸酶的克隆和功能表征。序列和系统发育分析表明这两种 Elovl 分别为推测的 Elovl4 和 Elovl6。使用 中的重组表达系统,我们证明了 Elovl4 对 C18-C22 PUFA 底物的延伸能力。 Elovl6 延伸饱和脂肪酸、单不饱和脂肪酸,有趣的是,还延伸 C18-C20 PUFA。总的来说,这两种 Elovl 都完成了将 C18 PUFA 转化为各自的 LC-PUFA 产物所需的延伸步骤。Elovl4 主要在肝胰腺和鳃组织中表达,而 Elovl6 主要在消化组织中表达。在饲喂植物油基饲料的泥蟹中,这两种酶的表达水平更高。组织脂肪酸组成也表明在表达这两种延伸酶的组织中存在 LC-PUFA 生物合成中间产物。总之,我们在这里报告了两种在海洋短尾类动物中具有 PUFA 延伸活性的新型 Elovl。这将极大地促进对甲壳类动物 LC-PUFA 生物合成途径的理解,并推进泥蟹集约化养殖的水产饲料的开发。

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