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串联基因复制是通过细菌中水平转移基因的激活而选择的。

Tandem gene duplication selected by activation of horizontally transferred gene in bacteria.

机构信息

Key Laboratory of Systems Microbial Biotechnology, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, 300308, China.

National Technology Innovation Center of Synthetic Biology, Tianjin, 300308, China.

出版信息

Appl Microbiol Biotechnol. 2024 May 23;108(1):340. doi: 10.1007/s00253-024-13160-z.

Abstract

Horizontal gene transfer occurs frequently in bacteria, but the mechanism driving activation and optimization of the expression of horizontally transferred genes (HTGs) in new recipient strains is not clear. Our previous study found that spontaneous tandem DNA duplication resulted in rapid activation of HTGs. Here, we took advantage of this finding to develop a novel technique for tandem gene duplication, named tandem gene duplication selected by activation of horizontally transferred gene in bacteria (TDAH), in which tandem duplication was selected by the activation of horizontally transferred selectable marker gene. TDAH construction does not contain any reported functional elements based on homologous or site-specific recombination and DNA amplification. TDAH only contains an essential selectable marker for copy number selection and 9-bp-microhomology border sequences for precise illegitimate recombination. One transformation and 3 days were enough to produce a high-copy strain, so its procedure is simple and fast. Without subsequent knockout of the endogenous recombination system, TDAH could also generate the relatively stable high-copy tandem duplication for plasmid-carried and genome-integrated DNA. TDAH also showed an excellent capacity for increase gene expression and worked well in different industrial bacteria. We also applied TDAH to select the optimal high copy number of ribA for vitamin B production in E. coli; the yield was improved by 3.5 times and remained stable even after 12 subcultures. TDAH is a useful tool for recombinant protein production and expression optimization of biosynthetic pathways. KEY POINTS: • We develop a novel and efficient technique (TDAH) for tandem gene duplication in bacterium. TDAH is based on the mechanism of HTG rapid activation. TDAH does not contain any reported functional elements based on homologous recombination and DNA amplification. TDAH only contains an essential selectable marker for copy number selection, so its construction and procedure are very simple and fast. • TDAH is the first reported selected and stable tandem-gene-duplication technique in which the selected high-copy plasmid-carried and genome-integrated DNA could remain stable without the subsequent knockout of recombination system. • TDAH showed an excellent capacity for regulating gene expression and worked well in different industrial bacteria, indicating it is a useful tool for recombinant protein production and expression optimization of biosynthetic pathways. • TDAH was applied to select the optimal high copy number of ribA for vitamin B production in E. coli; the yield was improved by 3.5-fold and remained stable even after 12 subcultures.

摘要

水平基因转移在细菌中经常发生,但驱动新受体菌株中水平转移基因(HTG)的激活和优化的机制尚不清楚。我们之前的研究发现,自发串联 DNA 重复导致 HTG 的快速激活。在这里,我们利用这一发现开发了一种新的串联基因重复技术,称为细菌中水平转移基因激活选择的串联基因重复(TDAH),其中串联重复通过水平转移选择标记基因的激活来选择。TDAH 的构建不包含任何基于同源或位点特异性重组和 DNA 扩增的报道功能元件。TDAH 仅包含用于拷贝数选择的必需选择标记和用于精确非合法重组的 9-bp-微同源边界序列。一次转化和 3 天足以产生高拷贝菌株,因此其过程简单快捷。在不随后敲除内源性重组系统的情况下,TDAH 也可以为质粒携带和基因组整合的 DNA 产生相对稳定的高拷贝串联重复。TDAH 还表现出增加基因表达的优异能力,并且在不同的工业细菌中效果良好。我们还将 TDAH 应用于选择大肠杆菌中维生素 B 生产的最佳高拷贝数 ribA;产量提高了 3.5 倍,即使经过 12 次传代仍保持稳定。TDAH 是重组蛋白生产和生物合成途径表达优化的有用工具。 要点: • 我们开发了一种新的、高效的细菌串联基因重复技术(TDAH)。TDAH 基于 HTG 快速激活的机制。TDAH 不包含任何基于同源重组和 DNA 扩增的报道功能元件。TDAH 仅包含用于拷贝数选择的必需选择标记,因此其构建和过程非常简单快捷。 • TDAH 是第一个报道的选择和稳定的串联基因重复技术,其中选择的高拷贝质粒携带和基因组整合 DNA 可以在不随后敲除重组系统的情况下保持稳定。 • TDAH 显示出调节基因表达的优异能力,并且在不同的工业细菌中效果良好,表明它是重组蛋白生产和生物合成途径表达优化的有用工具。 • TDAH 被应用于选择大肠杆菌中维生素 B 生产的最佳高拷贝数 ribA;产量提高了 3.5 倍,即使经过 12 次传代仍保持稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6fb/11111574/bd6b6e2870e8/253_2024_13160_Fig1_HTML.jpg

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