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首页> 外文期刊>Bulletin of the Korean Chemical Society >Searching for Growth Conditions for Optimized Expression of Recombinant Proteins in Escherichia coli by Using Two-Dimensional NMR Spectroscopy
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Searching for Growth Conditions for Optimized Expression of Recombinant Proteins in Escherichia coli by Using Two-Dimensional NMR Spectroscopy

机译:通过二维NMR光谱寻找在大肠杆菌中优化表达重组蛋白的生长条件

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摘要

Escherichia coli has been widely used as a host to produce recombinant proteins. However, because of its prokaryotic nature, it often fails to produce eukaryotic proteins in their native or correctly folded forms. To devise a systematic way to find such a condition that produces a large amount of correctly folded proteins, we chose to perturb the composition of intracellular metabolites by imposing different stresses such as the addition of sorbitol, NaCl, pH, and ethanol, and to monitor which metabolites showed the largest differences in the case of successful protein production. We profiled the metabolites under stresses by using two-dimensional NMR spectroscopy, and identified 39 metabolites after the protein production phase. We found that mild NaCl stress increased the yield of the target protein. Mildly high pH stress also helped in producing more of the target protein, and there is likely a connection between the isoelectric point of the target protein and the pH of medium for a higher yield. Exogenous sorbitol appeared to have been used to produce an osmoprotectant (trehalose) or direct energy source (glucose); thus it is advised that its use should not include isotopic labeling. Mild ethanol stress did not cause any significant change either in the metabolite profile or in the target protein production. We hope this work might shed light on how to improve production of the target protein by adjusting the external environment.
机译:大肠杆菌已被广泛用作生产重组蛋白的宿主。然而,由于其原核性质,它通常不能产生天然或正确折叠形式的真核蛋白质。为了设计一种系统的方法来发现产生大量正确折叠蛋白质的这种状况,我们选择通过施加不同的压力(例如添加山梨糖醇,NaCl,pH和乙醇)来扰乱细胞内代谢物的组成,并进行监测在成功生产蛋白质的情况下,哪些代谢物表现出最大的差异。我们使用二维NMR谱分析了在压力下的代谢产物,并在蛋白质生产阶段后鉴定出39种代谢产物。我们发现轻度的NaCl胁迫增加了目标蛋白的产量。轻度的高pH胁迫也有助于产生更多的目标蛋白质,目标蛋白质的等电点与培养基的pH之间可能存在联系,以提高产量。外源性山梨糖醇似乎已被用于生产渗透保护剂(海藻糖)或直接能源(葡萄糖)。因此,建议其使用不应包括同位素标记。轻度的乙醇胁迫在代谢物谱或目标蛋白质生产中均未引起任何显着变化。我们希望这项工作可以阐明如何通过调整外部环境来提高目标蛋白的产量。

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