首页> 美国卫生研究院文献>Nucleic Acids Research >Small multicopy non-integrative shuttle vectors based on the plasmid pRN1 for Sulfolobus acidocaldarius and Sulfolobus solfataricus model organisms of the (cren-)archaea
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Small multicopy non-integrative shuttle vectors based on the plasmid pRN1 for Sulfolobus acidocaldarius and Sulfolobus solfataricus model organisms of the (cren-)archaea

机译:小型的多拷贝非整合穿梭载体基于质粒pRN1用于Sulfolobus acidocaldarius和Sulfolobus solfataricus是(cren-)古细菌的模型生物

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摘要

The extreme thermoacidophiles of the genus Sulfolobus are among the best-studied archaea but have lacked small, reliable plasmid vectors, which have proven extremely useful for manipulating and analyzing genes in other microorganisms. Here we report the successful construction of a series of Sulfolobus–Escherichia coli shuttle vectors based on the small multicopy plasmid pRN1 from Sulfolobus islandicus. Selection in suitable uracil auxotrophs is provided through inclusion of pyrEF genes in the plasmid. The shuttle vectors do not integrate into the genome and do not rearrange. The plasmids allow functional overexpression of genes, as could be demonstrated for the β-glycosidase (lacS) gene of S. solfataricus. In addition, we demonstrate that this β-glycosidase gene could function as selectable marker in S. solfataricus. The shuttle plasmids differ in their interruption sites within pRN1 and allowed us to delineate functionally important regions of pRN1. The orf56/orf904 operon appears to be essential for pRN1 replication, in contrast interruption of the highly conserved orf80/plrA gene is tolerated. The new vector system promises to facilitate genetic studies of Sulfolobus and to have biotechnological uses, such as the overexpression or optimization of thermophilic enzymes that are not readily performed in mesophilic hosts.
机译:Sulfolobus属的极端嗜热嗜酸菌是研究最多的古细菌之一,但缺少小型可靠的质粒载体,事实证明这些载体对操纵和分析其他微生物中的基因极为有用。在这里,我们报告成功构建了一系列基于小数目的Sulfolobus islandicus多拷贝质粒pRN1的Sulfolobus-Escherichia coli穿梭载体。通过在质粒中包含pyrEF基因来提供对合适的尿嘧啶营养缺陷型的选择。穿梭载体不整合到基因组中并且不重排。质粒允许基因的功能性过表达,如针对S. solfataricus的β-糖苷酶(lacS)基因所证明的。另外,我们证明了该β-糖苷酶基因可以作为S. solfataricus中的选择标记。穿梭质粒在pRN1中的中断位点不同,这使我们能够描述pRN1在功能上的重要区域。 orf56 / orf904操纵子似乎是pRN1复制必不可少的,相比之下,高度保守的orf80 / plrA基因的中断是可以容忍的。新的载体系统有望促进对硫磺菌的遗传研究,并具有生物技术用途,例如在嗜温宿主中不易进行的嗜热酶的过表达或优化。

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