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首页> 外文期刊>Biotechnology and Bioengineering >Improving N-glycosylation efficiency in Escherichia coli using shotgun proteomics, metabolic network analysis, and selective reaction monitoring
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Improving N-glycosylation efficiency in Escherichia coli using shotgun proteomics, metabolic network analysis, and selective reaction monitoring

机译:使用shot弹枪蛋白质组学,代谢网络分析和选择性反应监测提高大肠杆菌中N-糖基化效率

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摘要

Recently, the prospect of using Escherichia coli as a host for human glycoprotein production has increased due to detailed characterization of the prokaryotic N-glycosylation process and the ability to transfer the system into this bacterium. Although functionality of the native Campylobacter jejuni N-glycosylation system in E. coli has been demonstrated, the efficiency of the process using the well-characterized C. jejuni glycoprotein AcrA, was found to be low at 13.4±0.9% of total extracted protein. A combined approach using isobaric labeling of peptides and probability-based network analysis of metabolic changes was applied to forward engineer E. coli to improve glycosylation efficiency of AcrA. Enhancing flux through the glyoxylate cycle was identified as a potential metabolic manipulation to improve modification efficiency and was achieved by increasing the expression of isocitrate lyase. While the overall recombinant protein titre did not change significantly, the amount of glycosylated protein increased by approximately 300%.
机译:最近,由于原核生物N-糖基化过程的详细表征以及将系统转移到该细菌中的能力,使用大肠杆菌作为人类糖蛋白生产宿主的前景有所增加。尽管已经证明了大肠杆菌中天然空肠弯曲杆菌N-糖基化系统的功能,但发现使用完全表征的空肠弯曲杆菌糖蛋白AcrA的方法效率低,仅为总提取蛋白的13.4±0.9%。使用多肽的等压线标记和代谢变化的基于概率的网络分析的组合方法被应用于正向工程大肠杆菌,以提高AcrA的糖基化效率。通过乙醛酸循环增强通量被认为是改善修饰效率的潜在代谢操作,并且通过增加异柠檬酸裂合酶的表达来实现。虽然总体重组蛋白滴度没有明显变化,但糖基化蛋白的量增加了约300%。

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