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通过对DsrA-Hfq模块进行负向自调控在工业中实现强大的合成耐受性。

Achieving robust synthetic tolerance in industrial through negative auto-regulation of a DsrA-Hfq module.

作者信息

Yang Xiaofeng, Yang Jingduan, Huang Haozheng, Yan Xiaofang, Li Xiaofan, Lin Zhanglin

机构信息

School of Biology and Biological Engineering, South China University of Technology, Guangzhou, 510006, China.

School of Biomedicine, Guangdong University of Technology, Guangzhou 510006, China.

出版信息

Synth Syst Biotechnol. 2024 Apr 11;9(3):462-469. doi: 10.1016/j.synbio.2024.04.003. eCollection 2024 Sep.

Abstract

In industrial fermentation processes, microorganisms often encounter acid stress, which significantly impact their productivity. This study focused on the acid-resistant module composed of small RNA (sRNA) DsrA and the sRNA chaperone Hfq. Our previous study had shown that this module improved the cell growth of MG1655 at low pH, but failed to obtain this desired phenotype in industrial strains. Here, we performed a quantitative analysis of DsrA-Hfq module to determine the optimal expression mode. We then assessed the potential of the CymR-based negative auto-regulation (NAR) circuit for industrial application, under different media, strains and pH levels. Growth assay at pH 4.5 revealed that NAR-05D04H circuit was the best acid-resistant circuit to improve the cell growth of MG1655. This circuit was robust and worked well in the industrial lysine-producing strain SCEcL3 at a starting pH of 6.8 and without pH control, resulting in a 250 % increase in lysine titer and comparable biomass in shaking flask fermentation compared to the parent strain. This study showed the practical application of NAR circuit in regulating DsrA-Hfq module, effectively and robustly improving the acid tolerance of industrial strains, which provides a new approach for breeding industrial strains with tolerance phenotype.

摘要

在工业发酵过程中,微生物经常会遇到酸胁迫,这会显著影响它们的生产力。本研究聚焦于由小RNA(sRNA)DsrA和sRNA伴侣蛋白Hfq组成的耐酸模块。我们之前的研究表明,该模块在低pH条件下改善了MG1655的细胞生长,但在工业菌株中未能获得这种理想表型。在此,我们对DsrA-Hfq模块进行了定量分析,以确定最佳表达模式。然后,我们评估了基于CymR的负向自动调节(NAR)电路在不同培养基、菌株和pH水平下的工业应用潜力。在pH 4.5下的生长测定表明,NAR-05D04H电路是改善MG1655细胞生长的最佳耐酸电路。该电路性能稳定,在工业赖氨酸生产菌株SCEcL3中,起始pH为6.8且无pH控制的情况下效果良好,与亲本菌株相比,摇瓶发酵中赖氨酸产量提高了250%,生物量相当。本研究展示了NAR电路在调节DsrA-Hfq模块中的实际应用,有效且稳定地提高了工业菌株的耐酸性,为培育具有耐受表型的工业菌株提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c182/11021974/6c137903ccc9/gr1.jpg

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