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Identification of factors impeding the production of a single-chain antibody fragment in Escherichia coli by comparing in vivo and in vitro expression

机译:通过比较体内和体外表达,鉴定阻碍在大肠杆菌中产生单链抗体片段的因子

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摘要

In order to produce the atrazine-specific scFv K411B, it was expressed in either the cytoplasm or the periplasm of Escherichia coli BL21(DE3). For periplasmic production, the scFv was N-terminally fused to the pelB leader, whereas the unfused variant resulted in cytoplasmic expression. The extent of protein accumulation differed significantly: The expression level of the scFv with leader was 2.3 times higher than that of the protein without leader. To further investigate this, the respective translation profiles were generated by coupled in vitro transcription/translation assays and gave according results. Periplasmic expression resulted in only 10% correctly folded scFv. The same percentage was obtained when the scFv was expressed in vitro, indicating that the oxidizing environment of the periplasm did not increase proper folding. Thus, the data obtained in vitro confirmed the findings observed in vivo and suggested that the discrepancy in expression levels was due to different translation efficiencies. However, the in vivo production of the scFv with EGFP fused C-terminally (scFv-EGFP) was only successful in the cytoplasm, although in vitro the expression with and without the leader rendered the same production profile. This indicated that neither the translation efficiency nor the solubility but other factors impeded periplasmic expression of the fusion protein.
机译:为了产生阿特拉津特异性的scFv K411B,其在大肠杆菌BL21(DE3)的细胞质或周质中表达。对于周质生产,scFv在N末端与pelB前导序列融合,而未融合的变体导致细胞质表达。蛋白质积累的程度差异显着:具有前导蛋白的scFv的表达水平是没有前导蛋白的scFv的表达水平的2.3倍。为了进一步研究,通过偶联的体外转录/翻译测定法产生各自的翻译谱,并给出相应的结果。周质表达仅导致正确折叠的scFv的10%。当在体外表达scFv时获得了相同的百分比,表明周质的氧化环境没有增加适当的折叠。因此,体外获得的数据证实了体内观察到的发现,并表明表达水平的差异是由于不同的翻译效率所致。然而,具有E末端融合的EGFP的scFv的体内生产(scFv-EGFP)仅在细胞质中成功,尽管在体外有或没有前导的表达都产生了相同的生产概况。这表明,翻译效率或溶解度均没有,但其他因素也阻碍了融合蛋白的周质表达。

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