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嗜热栖热菌HB27中基于热稳定Cre/lox的基因破坏系统的开发及大质粒pTT27的体内操作。

Development of a thermostable Cre/lox-based gene disruption system and in vivo manipulations of the megaplasmid pTT27 in Thermus thermophilus HB27.

作者信息

Hiratsu Keiichiro, Nunoshiba Tatsuo, Togawa Yoichiro, Yamauchi Yoshito

机构信息

Department of Applied Chemistry, National Defense Academy, Hashirimizu 1-10-20, Yokosuka, Kanagawa 239-8686, Japan.

College of Liberal Arts, International Christian University, Osawa 3-10-2, Mitaka, Tokyo 181-8585, Japan.

出版信息

Plasmid. 2024 Sep-Nov;131-132:102730. doi: 10.1016/j.plasmid.2024.102730. Epub 2024 Jul 30.

Abstract

We previously reported the development of a Cre/lox-based gene disruption system for multiple markerless gene disruption in Thermus thermophilus; however, it was a time-consuming method because it functioned at 50 °C, the minimum growth temperature of T. thermophilus HB27. In the present study, we improved this system by introducing random mutations into the cre-expressing plasmid, pSH-Cre. One of the resulting mutant plasmids, pSH-CreFM allowed us to remove selection marker genes by Cre-mediated recombination at temperatures up to 70 °C. By using the thermostable Cre/lox system with pSH-CreFM, we successfully constructed two valuable pTT27 megaplasmid mutant strains, a plasmid-free strain and β-galactosidase gene deletion strain, which were produced by different methods. The thermostable Cre/lox system improved the time-consuming nature of the original Cre/lox system, but it was not suitable for multiple markerless gene disruption in T. thermophilus because of its highly efficient induction of Cre-mediated recombination even at 70 °C. However, in vivo megaplasmid manipulations performed at 65 °C were faster and easier than with the original Cre/lox system. Collectively, these results indicate that this system is a powerful tool for engineering T. thermophilus megaplasmids.

摘要

我们之前报道了一种基于Cre/lox的基因破坏系统的开发,用于嗜热栖热菌中的多个无标记基因破坏;然而,这是一种耗时的方法,因为它在嗜热栖热菌HB27的最低生长温度50℃下起作用。在本研究中,我们通过在表达cre的质粒pSH-Cre中引入随机突变来改进该系统。所得突变质粒之一pSH-CreFM使我们能够在高达70℃的温度下通过Cre介导的重组去除选择标记基因。通过使用带有pSH-CreFM的热稳定Cre/lox系统,我们成功构建了两种有价值的pTT27大质粒突变菌株,一种无质粒菌株和β-半乳糖苷酶基因缺失菌株,它们是通过不同方法产生的。热稳定Cre/lox系统改善了原始Cre/lox系统耗时的特性,但由于其即使在70℃时也能高效诱导Cre介导的重组,因此不适用于嗜热栖热菌中的多个无标记基因破坏。然而,在65℃下进行的体内大质粒操作比原始Cre/lox系统更快、更容易。总体而言,这些结果表明该系统是工程改造嗜热栖热菌大质粒的有力工具。

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