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监测转录组和蛋白质组图谱,以研究在特定恒化器条件下大肠杆菌对重组蛋白表达的细胞反应。

Monitoring of transcriptome and proteome profiles to investigate the cellular response of E. coli towards recombinant protein expression under defined chemostat conditions.

作者信息

Dürrschmid Karin, Reischer Helga, Schmidt-Heck Wolfgang, Hrebicek Thomas, Guthke Reinhard, Rizzi Andreas, Bayer Karl

机构信息

Department of Biotechnology, University of Natural Resources and Applied Life Science, Muthgasse 18, 1190 Vienna, Austria.

出版信息

J Biotechnol. 2008 May 20;135(1):34-44. doi: 10.1016/j.jbiotec.2008.02.013. Epub 2008 Mar 4.

DOI:10.1016/j.jbiotec.2008.02.013
PMID:18405993
Abstract

The use of strong promoter systems for recombinant protein production generates high product yields, but also overburdens the host cell metabolism and compromises production. Escherichia coli has highly developed regulatory pathways that are immediately responsive to adverse conditions. To gain insight into stress response mechanisms and to detect marker genes and proteins for stress specific monitoring time course analysis of controlled chemostat cultivations was performed using E. coli total microarray and difference gel electrophoresis (Ettan DIGE). In order to detect differences and consistencies of stress response as well as the impact of the inducer isopropyl-beta-d-thiogalactopyranosid on cells, expression of two recombinant proteins (hSOD and GFPmut3.1) was investigated. Genes involved in aerobic metabolism under control of the ArcB/ArcA two component system were found to be down-regulated, and the interplay of the psp operon, ArcA system and guanosine tetraphosphate is suggested to be involved in stress regulatory mechanisms. A distinct impact of the two recombinant proteins was observed, particularly on levels of known stress regulatory genes and proteins, as well as on the response associated with ArcA and psp. Altogether, 62 genes as well as seven proteins showed consistent expression levels due to recombinant gene expression, and are therefore suggested to be appropriate monitoring targets.

摘要

使用强启动子系统进行重组蛋白生产可产生高产量的产物,但也会使宿主细胞代谢负担过重并影响生产。大肠杆菌具有高度发达的调控途径,能对不利条件立即做出反应。为深入了解应激反应机制,并检测用于应激特异性监测的标记基因和蛋白质,使用大肠杆菌全基因组微阵列和差异凝胶电泳(Ettan DIGE)对受控恒化器培养物进行了时间进程分析。为了检测应激反应的差异和一致性以及诱导剂异丙基-β-D-硫代半乳糖苷对细胞的影响,研究了两种重组蛋白(hSOD和GFPmut3.1)的表达。发现受ArcB/ArcA双组分系统控制的参与有氧代谢的基因被下调,并且推测psp操纵子、ArcA系统和四磷酸鸟苷之间的相互作用参与应激调节机制。观察到这两种重组蛋白有明显影响,特别是对已知应激调节基因和蛋白质的水平,以及对与ArcA和psp相关的反应的影响。总之,由于重组基因表达,62个基因以及7种蛋白质表现出一致的表达水平,因此建议将它们作为合适的监测靶点。

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