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A novel gene expression system for Ralstonia eutropha based on the T7 promoter

机译:基于T7启动子的Ralstonia Eutropha一种新型基因表达系统

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Ralstonia eutropha (syn. Cupriavidus necator) is a model microorganism for studying metabolism of polyhydroxyalkanoates (PHAs) and a potential chassis for protein expression due to various advantages. Although current plasmid systems of R. eutropha provide a basic platform for gene expression, the performance of the expression-inducing systems is still limited. In addition, the sizes of the cloned genes are limited due to the large sizes of the plasmid backbones. In this study, an R. eutropha T7 expression system was established by integrating a T7 RNA polymerase gene driven by the PBAD promoter into the genome of R. eutropha, as well as adding a T7 promoter into a pBBR1-derived plasmid for gene expression. In addition, the essential DNA sequence necessary for pBBR1 plasmid replication was identified, and the redundant parts were deleted reducing the expression plasmid size to 3392?bp, which improved the electroporation efficiency about 4 times. As a result, the highest expression level of RFP was enhanced, and the L-arabinose concentration for expression induction was decreased 20 times. The R. eutropha T7 expression system provides an efficient platform for protein production and synthetic biology applications.
机译:Ralstonia Eutropha(SYN。崔造古氏体批发剂)是用于研究多羟基烷烃(PHA)代谢的模型微生物,以及由于各种优点,蛋白质表达的潜在底盘。尽管R. Eutropha的电流质粒系统提供了基因表达的基本平台,但表达诱导系统的性能仍然有限。另外,由于质粒骨架的大尺寸,克隆基因的尺寸受到限制。在该研究中,通过将PBAD启动子驱动的T7 RNA聚合酶基因与R. Eutropha的基因组相容,以及将T7启动子添加到基因表达中的PBBr1衍生质粒中来建立R. Eutropha T7表达系统。另外,鉴定了PBBR1质粒复制所需的基本DNA序列,缺失冗余部分将表达质粒大小降至3392μlβBP,这提高了电穿孔效率约为4次。结果,增强了RFP的最高表达水平,表达诱导的L-阿拉伯糖浓度降低了20倍。 R. Eutropha T7表达系统为蛋白质生产和合成生物应用提供了有效的平台。

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