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Tracing Metabolite Footsteps of Escherichia coli Along the Time Course of Recombinant Protein Expression by Two-Dimensional NMR Spectroscopy

机译:二维NMR谱图追踪重组蛋白表达随时间变化的大肠杆菌代谢足迹

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摘要

The recombinant expression of proteins has been the method of choice to meet the demands from proteomics and structural genomics studies. Despite its successful production of many heterologous proteins, Escherichia coli failed to produce many other proteins in their native forms. This may be related to the fact that the stresses resulting from the overproduction interfere with cellular processes. To better understand the physiological change during the overproduction phase, we profiled the metabolites along the time course of the recombinant protein expression. We identified 32 metabolites collected from different time points in the protein production phase. The stress induced by protein production can be characterized by (A) the increased usage of aspartic acid, choline, glycerol, and N-acetyllysine; and (B) the accumulation of adenosine, alanine, oxidized glutathione, glycine, N-acetylputrescine, and uracil. We envision that this work can be used to create a strategy for the production of usable proteins in large quantities.
机译:蛋白质的重组表达已成为满足蛋白质组学和结构基因组学研究需求的选择方法。尽管成功生产了许多异源蛋白质,大肠杆菌仍未能以其天然形式生产许多其他蛋白质。这可能与以下事实有关:过度生产所产生的压力会干扰细胞过程。为了更好地了解过量生产阶段的生理变化,我们对重组蛋白表达过程中的代谢产物进行了分析。我们确定了从蛋白质生产阶段不同时间点收集的32种代谢产物。由蛋白质生产引起的应激的特征可以是(A)天冬氨酸,胆碱,甘油和N-乙酰赖氨酸的使用增加; (B)腺苷,丙氨酸,氧化型谷胱甘肽,甘氨酸,N-乙酰基酪胺酸和尿嘧啶的积累。我们设想这项工作可以用来创建大量生产可用蛋白的策略。

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