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通过使genK和genL失活对甲基转移酶进行工程改造,可使棘孢小单孢菌49-92S工业菌株中的庆大霉素C1a产量显著增加。

Engineering the methyltransferase through inactivation of the genK and genL leads to a significant increase of gentamicin C1a production in an industrial strain of Micromonospora echinospora 49-92S.

作者信息

Xu Feng, Zhang Xinyu, Liu Ling, Ke Xiang, Wu Jie, Guo Yuanxin, Tian Xiwei, Chu Ju

机构信息

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, People's Republic of China.

出版信息

Bioprocess Biosyst Eng. 2022 Oct;45(10):1693-1703. doi: 10.1007/s00449-022-02774-0. Epub 2022 Aug 27.

Abstract

In this study, a single-component high-yielding Micromonospora echinospora strain 49-92S-KL01 was constructed by deleting methyltransferase-encoding genes genK and genL. In 5-L fermentation trials, gentamicin C1a titers in the mutant strain were 3.22-fold higher than that in the parental strain (211 U/mL vs. 50 U/mL). The glycolysis pathway and tricarboxylic acid cycle fluxes were reduced by 26.8% and 26.6%, respectively, compared to the parental strain according to the metabolic flux analysis during the stationary phase, resulting in lower levels of energy supplements required for the cellular maintenance. Meanwhile, a significant enhancement in precursor (paromamine) accumulation and availability was observed in 49-92S-KL01 compared to parental strain. These results indicate that genK and genL significantly affect the synthesis of gentamicin C1a. In addition, this study provides a more rational strategy for gentamicin C1a production.

摘要

在本研究中,通过删除编码甲基转移酶的基因genK和genL构建了单组分高产棘孢小单孢菌菌株49-92S-KL01。在5-L发酵试验中,突变菌株中庆大霉素C1a的效价是亲本菌株的3.22倍(211 U/mL对50 U/mL)。根据稳定期的代谢通量分析,与亲本菌株相比,糖酵解途径和三羧酸循环通量分别降低了26.8%和26.6%,从而降低了细胞维持所需的能量补充水平。同时,与亲本菌株相比,在49-92S-KL01中观察到前体(巴龙胺)积累和可用性显著提高。这些结果表明,genK和genL显著影响庆大霉素C1a的合成。此外,本研究为庆大霉素C1a的生产提供了更合理的策略。

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