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Construction and Characterization of a Medium Copy Number Expression Vector Carrying Auto-Inducible dps Promoter to Overproduce a Bacterial Superoxide Dismutase in Escherichia coli

机译:中等拷贝数表达载体的构建与表征携带自诱导性DPS启动子在大肠杆菌中过度产生的细菌超氧化物歧化酶

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Medium copy number expression vector and auto-inducible promoter could be a solution for producing recombinant therapeutic proteins in industrial scale regarding plasmid stability, cost, and product quality. This work aimed to construct a medium copy number pBR322-based expression vector carrying auto-inducible promoter, determine its ability to express heterologous gene, and study its segregational stability. Three stationary-phase promoters of Escherichia coli genes (gadA, dps and sbmC) were used to produce a superoxide dismutase from Staphylococcus equorum (rMnSODSeq) coding region from pBR322tet (pBR322-mini). Four plasmids were constructed with different promoters, i.e., T7 (pBMsod), gadA (pMCDsod), dps (pCADsod), and sbmC (pCDSsod) using pBR322-mini as backbone. Results showed that rMnSODSeq expression from pBMsod was significantly higher than that from pJExpress414sod (high copy number plasmid). Meanwhile, rMnSODSeq from pCADsod (auto-inducible promoter) was as high as from pBMsod (IPTG-inducible T7 promoter). rMnSODSeq expressed from pCADsod when bacterial cells entered stationary phase appeared as an active protein band of 23.5kDa when analyzed by zymography and SDS-PAGE. pCADsod displayed the highest stability compared with pBMsod and pJEXpress414sod by plasmid retention assay. We demonstrate the use of an auto-inducible dps promoter to express high level of heterologous protein, an SOD of S. equorum, from a stable expression vector with medium copy number.
机译:中等拷贝数表达载体和自诱导型启动子可以是在工业规模中生产重组治疗蛋白的溶液,其具有质粒稳定性,成本和产品质量。该作业旨在构建培养基拷贝数PBR322的表达载体携带的自诱导型启动子,确定其表达异源基因的能力,并研究其分离稳定性。使用来自PBR322TET(PBR322-MINI)的三级大肠杆菌基因(GADA,DPS和SBMC)的三个固定相启动子来生产来自葡萄球菌(RMNSodseq)编码区的超氧化物歧化酶。使用PBR322-Mini作为骨架,用不同的启动子,即T7(PBMSOD),GADA(PMCDSOD),DPS(PCDSOD)和SBMC(PCDSSOD)构建四种质粒。结果表明,PBMSOD的RMNSodseq表达明显高于PJExpress414Sod(高拷贝数质粒)。同时,来自PCADSOD的RMNSODSEQ(自动诱导型启动子)与PBMSOD(IPTG-IMIBLE T7启动子)高。当通过酶谱和SDS-PAGE分析时,当细菌细胞进入固定相时,从PCADSOD表达的RMNSODSEQ出现为23.5kda的活性蛋白质带。 PCADSOD与PBMSOD和PJEXPRESS414SOD通过质粒保留测定显示了最高稳定性。我们证明了使用自诱导的DPS启动子以表达高水平的异源蛋白,从稳定的表达载体与中等拷贝数量的稳定表达载体表达高水力的异源蛋白质。

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