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采用一种新策略在大肠杆菌中实现达松维尔诺卡氏菌NCIM 5124的埃托因生物合成基因簇的共表达。

Coexpression of the Ectoine Biosynthetic Gene Cluster from Nocardiopsis dassonvillei NCIM 5124 in Escherichia coli by Using a Novel Strategy.

作者信息

Kadam Pratik M, Barvkar Vitthal T, Patil Swaranjali S, Ahirrao Shubham B, Zinjarde Smita S

机构信息

Department of Biotechnology (with Jointly Merged Institute of Bioinformatics and Biotechnology), Savitribai Phule Pune University, Pune, 411007, India.

Department of Botany, Savitribai Phule Pune University, Pune, 411007, India.

出版信息

Curr Microbiol. 2025 Sep 18;82(11):510. doi: 10.1007/s00284-025-04498-2.

Abstract

Ectoine, a natural cell protectant produced by a variety of bacteria has commercial value. In this study, Escherichia coli BL21(DE3) was engineered for producing ectoine by using a novel approach. The ectABC gene cluster from Nocardiopsis dassonvillei NCIM 5124 was codon optimized for E. coli and a pET-24a(+) based construct (pEctoineCAB) was designed. Two elements-P2A tag (derived from porcine teschovirus-1 that causes ribosomal skipping) and IRES sequence (internal ribosome entry site from encephalomyocarditis virus) were introduced to ensure sufficient expression levels of all the enzymes relevant to ectoine production. The ability of the transformant harbouring pEctoineCAB was evaluated for its ectoine biosynthetic capability. In the presence of 0.1 mM isopropyl β-D-1-thiogalactopyranoside (IPTG) as an inducer, 31.52 mg/g cell dry weight (CDW) of ectoine was obtained. After inclusion of 200 mM L-aspartic acid as precursor, this content was further enhanced to 131.41 mg/g CDW. With the acquired ability to produce ectoine, the recombinant strain tolerated sodium chloride (NaCl) up to a level of 5%. Compared to the original organism that produced 40.78 mg/g CDW of ectoine after 48 h in medium containing 5% NaCl, the recombinant produced higher content of ectoine (131.41 mg/g CDW) after 24 h of incubation in the absence of salt. On account of these features, the process of ectoine production by the recombinant was deemed effectual and economically lucrative for large-scale production. This is the first report on the use of P2A tag in E. coli for effective production of an economically important product.

摘要

依克多因是一种由多种细菌产生的天然细胞保护剂,具有商业价值。在本研究中,采用一种新方法对大肠杆菌BL21(DE3)进行工程改造以生产依克多因。对来自达松维尔诺卡氏菌NCIM 5124的ectABC基因簇进行了大肠杆菌密码子优化,并设计了基于pET-24a(+)的构建体(pEctoineCAB)。引入了两个元件——P2A标签(源自引起核糖体跳跃的猪捷申病毒-1)和IRES序列(脑心肌炎病毒的内部核糖体进入位点),以确保与依克多因生产相关的所有酶都有足够的表达水平。对携带pEctoineCAB的转化体的依克多因生物合成能力进行了评估。在0.1 mM异丙基-β-D-1-硫代半乳糖苷(IPTG)作为诱导剂的情况下,获得了31.52 mg/g细胞干重(CDW)的依克多因。加入200 mM L-天冬氨酸作为前体后,该含量进一步提高到131.41 mg/g CDW。凭借获得的生产依克多因的能力,重组菌株能够耐受高达5%的氯化钠(NaCl)。与在含5% NaCl的培养基中培养48小时后产生40.78 mg/g CDW依克多因的原始菌株相比,重组菌株在无盐条件下培养24小时后产生的依克多因含量更高(131.41 mg/g CDW)。鉴于这些特性,重组体生产依克多因的过程被认为对于大规模生产是有效且经济有利可图的。这是关于在大肠杆菌中使用P2A标签有效生产一种具有经济重要性的产品的首次报道。

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