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首页> 外文期刊>Journal of Biotechnology >Development of an antibiotic-free plasmid selection system based on glycine auxotrophy for recombinant protein overproduction in Escherichia coli
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Development of an antibiotic-free plasmid selection system based on glycine auxotrophy for recombinant protein overproduction in Escherichia coli

机译:基于甘氨酸营养缺陷型的无抗生素质粒选择系统的开发,用于大肠杆菌中重组蛋白的过量生产

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摘要

An alternative approach to the use of antibiotic selection markers for maintenance of recombinant plasmid vectors in Escherichia coli based on an aminoacid auxotrophy complementation has been developed. An E. coli M15-derivated glycine-auxotrophic strain of has been constructed by means of a PCR-based approach. This mutant strain contains a deletion in the glyA gene, which encodes for serine hydroxymethyl transferase, an enzyme involved in the main glycine biosynthesis pathway in E. coli. Also, we have constructed the complementation plasmid pQE alpha beta rham derived from the commercially available expression vector pQE40 (QIAGEN) containing the glyA homologous gene under the control of the constitutive weak promoter P3. By using the E. coli M15 Delta glyA strain combined with the pQE alpha beta rham plasmid, a successful complementation system was achieved, allowing transformants to grow on minimal media without glycine supplementation. The capability of the new system E. coli M15 Delta glyA/pQE alpha beta rham for recombinant overproduction of rhamnulose 1-phosphate aldolase was evaluated in antibiotic free fed-batch cultures at controlled specific growth rate, obtaining high cell density cultures and high RhuA production and productivity levels comparable to those obtained with the conventional system. The new selection marker based on glycine-auxotrophy is a promising genetic tool, not only for recombinant protein production, but also for plasmid DNA production processes, where antibiotics can not be present in the medium formulation.
机译:已经开发了使用抗生素选择标记来基于氨基酸营养缺陷型互补在大肠杆菌中维持重组质粒载体的替代方法。已经通过基于PCR的方法构建了大肠杆菌M15衍生的甘氨酸营养缺陷型菌株。该突变株在glyA基因中缺失,该基因编码丝氨酸羟甲基转移酶,该酶参与大肠杆菌的主要甘氨酸生物合成途径。此外,我们已经构建了互补质粒pQEαβrham,该质粒衍生自在组成型弱启动子P3的控制下包含glyA同源基因的可商购表达载体pQE40(QIAGEN)。通过将大肠杆菌M15 Delta glyA菌株与pQEαβrham质粒结合使用,获得了成功的互补系统,使转化体可以在不添加甘氨酸的情况下在最少的培养基上生长。在无抗生素补料分批培养物中以受控的特定生长速率评估了新系统大肠杆菌M15 Delta glyA / pQEαβ鼠李糖重组过量生产鼠李糖1-磷酸醛缩酶的能力,获得了高细胞密度培养物和高RhuA产量和生产率水平可与传统系统相比。基于甘氨酸营养缺陷型的新选择标记是一种很有前途的遗传工具,不仅可用于重组蛋白生产,还可用于质粒DNA生产过程,而培养基配方中不能存在抗生素。

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