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通过化学调节剂对纳豆芽孢杆菌进行适应性进化以增强甲萘醌-7的生物合成

Enhancing menaquinone-7 biosynthesis by adaptive evolution of Bacillus natto through chemical modulator.

作者信息

Zhang Bei, Peng Cheng, Lu Jianyao, Hu Xuechao, Ren Lujing

机构信息

College of Biotechnology and Pharmaceutical Engineering, Nanjing Tech University, No. 30 South Puzhu Road, Nanjing, 211816, People's Republic of China.

Shanghai JanStar Technology Development Co., Ltd., No. 1288, Huateng Road, Shanghai, 201700, China.

出版信息

Bioresour Bioprocess. 2022 Nov 22;9(1):120. doi: 10.1186/s40643-022-00609-0.

Abstract

Menaquinone-7 (MK-7) is a kind of vitamin K2 playing an important role in the treatment and prevention of cardiovascular disease, osteoporosis and arterial calcification. The purpose of this study is to establish an adaptive evolution strategy based on a chemical modulator to improve MK-7 biosynthesis in Bacillus natto. The inhibitor of 5-enolpyruvylshikimate-3-phosphate synthase (EPSP synthase), glyphosate, was chosen as the chemical modulator to perform the experiments. The final strain ALE-25-40, which was obtained after 40 cycles in 25 mmol/L glyphosate, showed a maximal MK-7 titer of 62 mg/L and MK-7 productivity of 0.42 mg/(L h), representing 2.5 and 3 times the original strain, respectively. Moreover, ALE-25-40 generated fewer spores and showed a higher NADH and redox potential. Furthermore, the mechanism related to the improved performance of ALE-25-40 was investigated by comparative transcriptomics analysis. Genes related to the sporation formation were down-regulated. In addition, several genes related to NADH formation were also up-regulated. This strategy proposed here may provide a new and alternative directive for the industrial production of vitamin K2.

摘要

甲萘醌-7(MK-7)是一种维生素K2,在心血管疾病、骨质疏松症和动脉钙化的治疗与预防中发挥着重要作用。本研究的目的是建立一种基于化学调节剂的适应性进化策略,以提高纳豆芽孢杆菌中MK-7的生物合成。选择5-烯醇丙酮酸莽草酸-3-磷酸合酶(EPSP合酶)抑制剂草甘膦作为化学调节剂进行实验。在25 mmol/L草甘膦中经过40轮循环后获得的最终菌株ALE-25-40,其MK-7最高效价为62 mg/L,MK-7生产率为0.42 mg/(L·h),分别是原始菌株的2.5倍和3倍。此外,ALE-25-40产生的孢子较少,并且具有较高的NADH和氧化还原电位。此外,通过比较转录组学分析研究了ALE-25-40性能提高的相关机制。与芽孢形成相关的基因被下调。此外,几个与NADH形成相关的基因也被上调。本文提出的这一策略可能为维生素K2的工业化生产提供一种新的替代指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13d2/10992315/0e1d062677d0/40643_2022_609_Fig1_HTML.jpg

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