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A spreadable, non-integrative and high copy number shuttle vector for Sulfolobus solfataricus based on the genetic element pSSVx from Sulfolobus islandicus

机译:基于Sulfolobus islandicus遗传元件pSSVx的Sulfolobus solfataricus的可传播,非整合和高拷贝数穿梭载体

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The pSSVx genetic element from Sulfolobus islandicus REY15/4 is a hybrid between a plasmid and a fusellovirus, able to be maintained in non-integrative form and to spread when the helper SSV2 virus is present in the cells. In this work, the satellite virus was engineered to obtain an Escherichia coli–Sulfolobus solfataricus shuttle vector for gene transfer and expression in S.solfataricus by fusing site-specifically the pSSVx chromosome with an E.coli plasmid replicon and the ampicillin resistance gene. The pSSVx-based vector was proven functional like the parental virus, namely it was able to spread efficiently through infected S.solfataricus cells. Moreover, the hybrid plasmid stably transformed S.solfataricus and propagated with no rearrangement, recombination or integration into the host chromosome. The high copy number of the artificial genetic element was found comparable with that calculated for the wild-type pSSVx in the new host cells, with no need of genetic markers for vector maintenance in the cells and for transfomant enrichment. The newly constructed vector was also shown to be an efficient cloning vehicle for the expression of passenger genes in S.solfataricus. In fact, a derivative plasmid carrying an expression cassette of the lacS gene encoding the β-glycosidase from S.solfataricus under the control of the Sulfolobus chaperonine (thermosome tf55) heat shock promoter was also able to drive the expression of a functional enzyme. Complementation of the β-galactosidase deficiency in a deletion mutant strain of S.solfataricus demonstrated that lacS gene was an efficient marker for selection of single transformants on solid minimal lactose medium.
机译:来自岛硫杆菌REY15 / 4的pSSVx遗传元件是质粒和融合病毒之间的杂交体,能够以非整合形式维持,并在细胞中存在辅助SSV2病毒时传播。在这项工作中,通过将位点特异性融合pSSVx染色体与大肠杆菌质粒复制子和氨苄青霉素抗性基因,工程改造了卫星病毒,以获得用于在沙门氏菌中进行基因转移和表达的大肠杆菌-Sulfolobus solfataricus穿梭载体。事实证明,基于pSSVx的载体具有与亲本病毒相同的功能,即它能够通过感染的链霉菌高效传播。此外,杂种质粒稳定地转化了S.solfataricus,并在没有重排,重组或整合进宿主染色体的情况下繁殖。发现人工遗传元件的高拷贝数与在新宿主细胞中针对野生型pSSVx计算的拷贝数相当,而无需遗传标记来维持细胞中的载体和进行跨人富集。新构建的载体还被证明是一种用于在S.solfataricus中表达客体基因的有效克隆载体。实际上,在Sulfolobus伴侣蛋白(热体tf55)热休克启动子的控制下,带有编码S.solfataricus的β-糖苷酶的lacS基因表达盒的衍生质粒也能够驱动功能性酶的表达。对S.solfataricus缺失突变株中的β-半乳糖苷酶缺乏症的补充表明,lacS基因是在固体最小乳糖培养基上选择单个转化子的有效标记。

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