首页> 外文期刊>Bulletin of the Korean Chemical Society >Relationship between Protein Expression Pattern and Host Metabolome Perturbation as Monitored by Two‐Dimensional NMR Spectroscopy
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Relationship between Protein Expression Pattern and Host Metabolome Perturbation as Monitored by Two‐Dimensional NMR Spectroscopy

机译:二维NMR光谱监测蛋白质表达模式与宿主代谢扰动的关系

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In producing large amounts of heterologous proteins, researchers most often use Escherichia coli as a host thanks to its extensively studied genetics, simple growth procedure, and low cost. However, the desired protein is often produced only in a form of inclusion bodies. Researchers have tried to devise a way to circumvent such a problem, and the ones using fusion partners seem to be the most successful. Based on our previous observation that the host metabolome was related to the outcomes of protein expression patterns, we proceeded to perturb the metabolome by applying a salt stress to see if we could shake up metabolite compositions to make them better suited for soluble expression of the target protein. We examined a subset of the metabolites which had been partially labeled with input 13C‐glucose. We tested 11 genes under 4 different NaCl concentrations, and identified 18 metabolites using the heteronuclear single quantum coherence NMR experiment. Most of the proteins kept their expression profiles unchanged, but two proteins were converted from inclusion bodies to a soluble form with increased NaCl concentration. Through the statistical analysis, we could identify a region where the soluble protein production was favored in the metabolite space. We hope that this work would provide an alternative strategy to produce the recombinant proteins in their soluble or native forms, not only in E. coli but also in other hosts.
机译:在生产大量的异源蛋白时,由于其广泛研究的遗传学,简单的生长程序和低成本,研究人员最常使用大肠杆菌作为主持人。然而,通常仅以包涵体形式生产所需的蛋白质。研究人员试图制定一种方法来规避这样的问题,并且使用融合伙伴的人似乎最成功。基于我们之前的观察结果,宿主代谢物与蛋白质表达模式的结果有关,我们通过施加盐胁迫来检测代谢物,看看我们是否可以摇动代谢物组合物以使它们更适合可溶性表达目标蛋白质。我们检查了已经用输入13C-葡萄糖部分标记的代谢物的子集。我们在4个不同的NaCl浓度下测试了11个基因,并使用异核单量子相干NMR实验确定了18个代谢物。大多数蛋白质保持其表达型材不变,但两种蛋白质从包含体转化为具有增加的NaCl浓度的可溶性形式。通过统计分析,我们可以识别在代谢物空间中有利于可溶性蛋白质产生的区域。我们希望这项工作能够提供一种替代策略,以在其可溶性或天然形式中生产重组蛋白,不仅在大肠杆菌中,而且在其他宿主中也是如此。

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