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一步法生物合成维生素C于…… (原文似乎不完整)

One-Step Biosynthesis of Vitamin C in .

作者信息

Zhou Mengyu, Bi Yanhui, Ding Mingzhu, Yuan Yingjin

机构信息

Key Laboratory of Systems Bioengineering (Ministry of Education), Frontier Science Center for Synthetic Biology, School of Chemical Engineering and Technology, Tianjin University, Tianjin, China.

Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Tianjin University, Tianjin, China.

出版信息

Front Microbiol. 2021 Feb 25;12:643472. doi: 10.3389/fmicb.2021.643472. eCollection 2021.

Abstract

Vitamin C (VC) is comprehensively applied in foods, cosmetics, pharmaceuticals, and especially clinical medicine. Nowadays, the industrial production of VC mainly relies on the classic two-step fermentation route, and researchers have explored the way for one-step fermentation of VC in recent years. In this study, a VC biosynthesis pathway that directly produced VC from glucose was reconstructed in , and the protein engineering and metabolic engineering strategies were adopted to improve it. First, five exogenous modules from were introduced into the chassis cells by synthetic biology approaches to obtain the strain YLAA harboring VC biosynthesis. In addition, L-galactose dehydrogenase (L-GalDH) and L-galactono-1,4-lactone dehydrogenase (L-GLDH) were fused and expressed in cells for the first time, which increased the intracellular VC accumulation by 2.78-fold, reaching 9.97 ± 0.09 mg/L. Through copy number engineering, it was further confirmed that the last step catalyzed by L-GLDH is the rate-limiting step. GDP-L-galactose phosphorylase (GPP) encoded by vtc2 is another rate-limiting enzyme confirmed by GAL1p overexpression results. Finally, by balancing gene expression and cell growth, the highest production strain with overexpressing vtc2 by multicopy plasmids was constructed. The VC accumulation reached 24.94 ± 1.16 mg/L, which was currently the highest production from glucose in . The production of the recombinant strain reached nearly 44 mg/L with the exogenous addition of L-galactose or glutathione. The results further emphasized the importance of the step catalyzed by GPP. The investigation provided experience for the efficient biosynthesis of VC and the determination of rate-limiting steps.

摘要

维生素C(VC)在食品、化妆品、制药领域,尤其是临床医学中有着广泛应用。目前,VC的工业生产主要依赖经典的两步发酵路线,近年来研究人员一直在探索VC一步发酵的方法。在本研究中,在[具体生物名称]中构建了一条直接从葡萄糖生产VC的生物合成途径,并采用蛋白质工程和代谢工程策略对其进行优化。首先,通过合成生物学方法将来自[具体生物名称]的五个外源模块导入底盘细胞,获得了具有VC生物合成能力的菌株YLAA。此外,首次在[具体生物名称]细胞中融合表达了L-半乳糖脱氢酶(L-GalDH)和L-半乳糖酸-1,4-内酯脱氢酶(L-GLDH),使细胞内VC积累量提高了2.78倍,达到9.97±0.09mg/L。通过拷贝数工程进一步证实,L-GLDH催化的最后一步是限速步骤。由vtc2编码的GDP-L-半乳糖磷酸化酶(GPP)是通过GAL1p过表达结果确认的另一种限速酶。最后,通过平衡基因表达和细胞生长,构建了通过多拷贝质粒过表达vtc2的最高产菌株。VC积累量达到24.94±1.16mg/L,这是目前[具体生物名称]中从葡萄糖生产VC的最高产量。在外源添加L-半乳糖或谷胱甘肽的情况下,重组菌株的产量达到近44mg/L。结果进一步强调了GPP催化步骤的重要性。该研究为VC的高效生物合成和限速步骤的确定提供了经验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c657/7947327/55d00b0b1a68/fmicb-12-643472-g001.jpg

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