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在黄色瘤酮球菌-蜡样芽孢杆菌联合菌群中组合表达山梨糖/山梨酮脱氢酶和辅助因子吡咯喹啉醌可以提高 2-酮-L-古洛糖酸的产量。

Combinational expression of sorbose/sorbosone dehydrogenases and cofactor pyrroloquinoline quinone increases 2-keto-L-gulonic acid production in Ketogulonigenium vulgare-Bacillus cereus consortium.

机构信息

Key Laboratory of Systems Bioengineering, Ministry of Education and Department of Pharmaceutical Engineering, School of Chemical Engineering and Technology, Tianjin University, P.O. Box 6888, Tianjin 300072, PR China.

出版信息

Metab Eng. 2013 Sep;19:50-6. doi: 10.1016/j.ymben.2013.05.006. Epub 2013 Jun 5.

Abstract

The expression levels of sorbose/sorbosone dehydrogenase genes (sdh and sndh) and the synthesis genes (pqqABCDEN) of the adjoint cofactor pyrroloquinoline quinone (PQQ) were genetically manipulated in Ketogulonigenium vulgare to increase the production of 2-keto-l-gulonic acid (2-KLG), the precursor of vitamin C, in the consortium of K. vulgare and Bacillus cereus. We found that overexpression of sdh-sndh alone in K. vulgare could not significantly enhance the production of 2-KLG, revealing the cofactor PQQ was required for the biosynthesis of 2-KLG. Various expression levels of PQQ were achieved by differential expression of pqqA, pqqABCDE and pqqABCDEN, respectively. The combinatorial expression of sdh/sndh and pqqABCDEN in K. vulgare enabled a 20% increase in the production of 2-KLG (79.1±0.6gl(-1)) than that of the parental K. vulgare (65.9±0.4gl(-1)) in shaking flasks. Our results demonstrated the balanced co-expression of both the key enzymes and the related cofactors was an efficient strategy to increase chemicals' biosynthesis.

摘要

在产 2-酮基-L-古龙酸(2-KLG)的酮古龙酸菌(Ketogulonigenium vulgare)和蜡状芽孢杆菌(Bacillus cereus)共生体中,通过遗传操作调控山梨糖/山梨醇脱氢酶基因(sdh 和 sndh)和伴随辅酶吡咯喹啉醌(PQQ)合成基因(pqqABCDEN)的表达水平,以提高维生素 C 的前体 2-KLG 的产量。我们发现,单独过表达 sdh-sndh 不能显著提高 2-KLG 的产量,表明 2-KLG 的生物合成需要辅酶 PQQ。通过差异表达 pqqA、pqqABCDE 和 pqqABCDEN 分别实现了不同水平的 PQQ 表达。酮古龙酸菌中 sdh/sndh 和 pqqABCDEN 的组合表达使 2-KLG 的产量(79.1±0.6gl(-1))比亲本酮古龙酸菌(65.9±0.4gl(-1))提高了 20%(在摇瓶中)。我们的结果表明,关键酶和相关辅酶的平衡共表达是提高化学品生物合成的有效策略。

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