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Δ12-去饱和酶的同源和异源表达增强了亚麻酸的产量。

Homologous and Heterologous Expression of Delta(12)-Desaturase in Enhanced the Production of Linolenic Acid.

机构信息

Colin Ratledge Center for Microbial Lipids, School of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255000, China.

Department of Food Sciences, College of Food Science and Engineering, Lingnan Normal University, Zhanjiang 524048, China.

出版信息

Molecules. 2022 Aug 27;27(17):5511. doi: 10.3390/molecules27175511.

Abstract

Linolenic acid (LA) is gaining more interest within the scientific community. This is because it has a potential medical role in reducing the risk of inflammation, carcinogenesis, atherosclerosis and diabetes and is a valuable nutraceutical for human health. The oleaginous fungus produces a high lipid content (36%), including valuable polyunsaturated fatty acids (PUFAs). However, the critical step in which oleic acid (OA) is converted into LA is not efficient at supplying enough substrates for PUFA synthesis. Hence, we propose a method to increase LA production based on genetic engineering. The overexpression of the Δ12-desaturase gene from and increased the LA content and improved the lipid accumulation (from 14.9% to 21.6% in the Δ12-desaturase gene of the overexpressing strain (Mc-D12MC) and from 14.9% to 18.7% in the Δ12-desaturase gene of overexpressing strain (Mc-D12MA)). Additionally, the up-regulated expression levels of these genes targeted the genes involved in NADPH production, implying that the elevated Δ12-desaturase gene may function as a critical regulator of NADPH and lipid synthesis in . This study provides the first evidence to support the design of metabolic engineering related to LA and PUFA production in for potential industrial applications.

摘要

亚油酸(LA)在科学界越来越受到关注。这是因为它在降低炎症、致癌、动脉粥样硬化和糖尿病风险方面具有潜在的医学作用,并且是一种有益于人类健康的有价值的营养保健品。产油真菌能够产生高含量的脂质(36%),包括有价值的多不饱和脂肪酸(PUFAs)。然而,将油酸(OA)转化为 LA 的关键步骤在提供足够的 PUFA 合成底物方面效率不高。因此,我们提出了一种基于基因工程的增加 LA 产量的方法。从 和 中过表达 Δ12-去饱和酶基因,增加了 LA 含量并改善了脂质积累(在 Δ12-去饱和酶基因过表达菌株(Mc-D12MC)中从 14.9%增加到 21.6%,在 Δ12-去饱和酶基因过表达菌株(Mc-D12MA)中从 14.9%增加到 18.7%)。此外,这些基因的上调表达水平针对 NADPH 产生所涉及的基因,这表明上调的 Δ12-去饱和酶基因可能作为 NADPH 和脂质合成的关键调节剂在 中发挥作用。本研究首次为设计与 LA 和 PUFA 生产相关的代谢工程提供了证据,以期在工业应用中得到应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/098e/9457725/47468fb65072/molecules-27-05511-g001.jpg

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