Togawa Yoichiro, Nunoshiba Tatsuo, Hiratsu Keiichiro
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.
Mol Genet Genomics. 2018 Feb;293(1):277-291. doi: 10.1007/s00438-017-1361-x. Epub 2017 Aug 24.
Markerless gene-disruption technology is particularly useful for effective genetic analyses of Thermus thermophilus (T. thermophilus), which have a limited number of selectable markers. In an attempt to develop a novel system for the markerless disruption of genes in T. thermophilus, we applied a Cre/lox system to construct a triple gene disruptant. To achieve this, we constructed two genetic tools, a loxP-htk-loxP cassette and cre-expressing plasmid, pSH-Cre, for gene disruption and removal of the selectable marker by Cre-mediated recombination. We found that the Cre/lox system was compatible with the proliferation of the T. thermophilus HB27 strain at the lowest growth temperature (50 °C), and thus succeeded in establishing a triple gene disruptant, the (∆TTC1454::loxP, ∆TTC1535KpnI::loxP, ∆TTC1576::loxP) strain, without leaving behind a selectable marker. During the process of the sequential disruption of multiple genes, we observed the undesired deletion and inversion of the chromosomal region between multiple loxP sites that were induced by Cre-mediated recombination. Therefore, we examined the effects of a lox66-htk-lox71 cassette by exploiting the mutant lox sites, lox66 and lox71, instead of native loxP sites. We successfully constructed a (∆TTC1535::lox72, ∆TTC1537::lox72) double gene disruptant without inducing the undesired deletion of the 0.7-kbp region between the two directly oriented lox72 sites created by the Cre-mediated recombination of the lox66-htk-lox71 cassette. This is the first demonstration of a Cre/lox system being applicable to extreme thermophiles in a genetic manipulation. Our results indicate that this system is a powerful tool for multiple markerless gene disruption in T. thermophilus.
无标记基因破坏技术对于嗜热栖热菌(Thermus thermophilus,简称嗜热栖热菌)的有效基因分析特别有用,因为该菌的选择标记数量有限。为了开发一种用于嗜热栖热菌基因无标记破坏的新系统,我们应用了Cre/lox系统来构建三重基因破坏株。为此,我们构建了两种遗传工具,即一个loxP-htk-loxP盒和表达cre的质粒pSH-Cre,用于通过Cre介导的重组进行基因破坏和去除选择标记。我们发现Cre/lox系统在最低生长温度(50°C)下与嗜热栖热菌HB27菌株的增殖兼容,从而成功建立了一个三重基因破坏株,即(∆TTC1454::loxP,∆TTC1535KpnI::loxP,∆TTC1576::loxP)菌株,且未留下选择标记。在多个基因的连续破坏过程中,我们观察到由Cre介导的重组诱导的多个loxP位点之间染色体区域的意外缺失和倒位。因此,我们通过利用突变型lox位点lox66和lox71而非天然loxP位点来研究lox66-htk-lox71盒的效果。我们成功构建了一个(∆TTC1535::lox72,∆TTC1537::lox72)双基因破坏株,而未诱导由lox66-htk-lox71盒的Cre介导重组产生的两个同向lox72位点之间0.7-kbp区域的意外缺失。这是首次证明Cre/lox系统可应用于极端嗜热菌的基因操作。我们的结果表明,该系统是嗜热栖热菌中多个无标记基因破坏的有力工具。