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Modification of the mycobacteriophage Ms6 attP core allows the integration of multiple vectors into different tRNAala T-loops in slow- and fast-growing mycobacteria

机译:分枝杆菌噬菌体Ms6 attP核心的修饰允许在缓慢和快速增长的分枝杆菌中将多个载体整合到不同的tRNAala T环中

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Background Mycobacteriophage Ms6 integrates into Mycobacterium smegmatis and M. bovis BCG chromosome at the 3' end of tRNAala genes. Homologous recombination occurs between the phage attP core and the attB site located in the T-loop. Integration-proficient vectors derived from Ms6 are useful genetic tools, but their insertion sites in the BCG chromosome remain poorly defined. The primary objective of this study was to identify Ms6 target genes in M. smegmatis and BCG. We then aimed to modify the attP site in Ms6-derived vectors, to switch integration to other tRNAala loci. This provided the basis for the development of recombinant M. bovis BCG strains expressing several reporter genes inserted into different tRNAala genes. Results The three tRNAala genes are highly conserved in M. smegmatis and BCG. However, in the T-loop of tRNAalaU and tRNAalaV containing the attB site, a single base difference was observed between the two species. We observed that the tRNAalaU gene was the only site into which Ms6-derived integration-proficient vectors integrated in M. smegmatis, whereas in BCG, the tRNAalaV gene was used as the target. No integration occurred in the BCG tRNAalaU T-loop, despite a difference of only one base from the 26-base Ms6 attP core. We mutated the attP core to give a perfect match with the other tRNAala T-loops from M. smegmatis and BCG. Modification of the seven-base T-loop decreased integration efficiency, identifying this site as a possible site of strand exchange. Finally, two Ms6 vectors were constructed to integrate two reporter genes into the tRNAalaU and tRNAalaV T-loops of the same BCG chromosome. Conclusion Small changes in the 7 bp T-loop attP site of Ms6 made it possible to use another attB site, albeit with a lower integration efficiency. These molecular studies on BCG tRNAala genes made it possible to create valuable tools for the site-directed insertion of several genes in the same BCG strain. These tools will be useful for the development of novel multivalent vaccines and genetic studies.
机译:背景分枝杆菌噬菌体Ms6在tRNA ala 基因的3'端整合到耻垢分枝杆菌和牛分枝杆菌BCG染色体中。同源重组发生在噬菌体attP核心和位于T环中的attB位点之间。源自Ms6的整合能力强的载体是有用的遗传工具,但它们在BCG染色体中的插入位点仍然定义不清。这项研究的主要目的是鉴定耻垢分枝杆菌和BCG中的Ms6靶基因。然后,我们旨在修饰Ms6衍生载体中的attP位点,以将整合切换到其他tRNA ala loci。这为开发表达几种插入不同tRNA ala 基因的报道基因的牛分枝杆菌BCG菌株提供了基础。结果这三个tRNA ala 基因在耻垢分枝杆菌和BCG中高度保守。但是,在包含attB位点的tRNA alaU 和tRNA alaV 的T环中,两个物种之间仅观察到一个碱基差异。我们观察到,tRNA alaU 基因是在耻垢分枝杆菌中整合了Ms6来源的整合型载体的唯一位点,而在BCG中,使用了tRNA alaV 基因作为目标。尽管与26个碱基的Ms6 attP核心只有一个碱基的差异,但在BCG tRNA alaU T环中未发生整合。我们突变了attP核心,使其与耻垢分枝杆菌和BCG的其他tRNA ala T环完美匹配。七碱基T环的修饰降低了整合效率,将该位点鉴定为链交换的可能位点。最后,构建了两个Ms6载体,将两个报告基因整合到同一BCG染色体的tRNA alaU 和tRNA alaV T环中。结论Ms6的7 bp T环attP位点的微小变化使得可以使用另一个attB位点,尽管整合效率较低。这些对BCG tRNA ala 基因的分子研究使得为同一个BCG菌株中多个基因的定点插入创造了有价值的工具成为可能。这些工具将对新型多价疫苗的开发和遗传研究有用。

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