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通过代谢工程来过量生产角鲨烯。

Metabolic Engineering of To Overproduce Squalene.

机构信息

State Key Laboratory of Bioreactor Engineering, Newworld Institute of Biotechnology , East China University of Science and Technology , 130 Meilong Road , Shanghai 200237 , China.

出版信息

J Agric Food Chem. 2020 Feb 19;68(7):2132-2138. doi: 10.1021/acs.jafc.9b07419. Epub 2020 Feb 6.

Abstract

Squalene has wide applications in the food and pharmaceutical industries. Engineering microbes to produce squalene is a promising alternative for traditional production approaches. In this study, squalene production was enhanced to 978.24 mg/L through stepwise overexpression of the enzymes that catalyze acetyl-CoA to squalene. Subsequently, to increase the activity of HMG-CoA reductase and alleviate the high dependence on NADPH, the HMG-CoA reductase (NADH-HMGR) from , highly specific for NADH, was introduced, which increased squalene production to 1086.31 mg/L. Native ethanol dehydrogenase and acetaldehyde dehydrogenase from were further overexpressed, which enhanced the capability to utilize ethanol for squalene synthesis and endowed the engineered strain with greater adaptability to high ethanol concentrations. Finally, a remarkable squalene production of 9472 mg/L was obtained from ethanol via carbon source-controlled fed-batch fermentation. This study will greatly accelerate the process of developing microbial cell factories for squalene production.

摘要

角鲨烯在食品和制药行业有广泛的应用。通过工程改造微生物来生产角鲨烯是传统生产方法的一种很有前途的替代方法。在这项研究中,通过逐步过表达催化乙酰辅酶 A 生成角鲨烯的酶,将角鲨烯的产量提高到了 978.24mg/L。随后,为了提高 HMG-CoA 还原酶的活性并减轻对 NADPH 的高度依赖,引入了对 NADH 具有高度特异性的 HMG-CoA 还原酶(NADH-HMGR),将角鲨烯的产量提高到了 1086.31mg/L。进一步过表达了来自 的天然乙醇脱氢酶 和乙醛脱氢酶 ,这增强了利用乙醇合成角鲨烯的能力,并使工程菌株对高乙醇浓度具有更强的适应性。最后,通过碳源控制的分批补料发酵,从乙醇中获得了高达 9472mg/L 的显著角鲨烯产量。这项研究将极大地加速开发微生物细胞工厂生产角鲨烯的进程。

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