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Analysis of Escherichia coli Global Gene Expression Profiles in Response to Overexpression and Deletion of CspC and CspE

机译:响应CspC和CspE过表达和缺失的大肠杆菌全局基因表达谱分析

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摘要

The Escherichia coli cold shock protein CspA family consists of nine proteins (CspA to CspI), of which two, CspE and CspC, are constitutively produced at 37°C and are involved in regulation of expression of genes encoding stress response proteins but can also perform an essential function during cold acclimation. In this study, we analyzed global transcript profiles of cells lacking cspE and cspC as well as cells individually overexpressing these proteins or a CspE mutant that is unable to melt nucleic acids and is defective in cold acclimation. The analysis reveals sets of genes whose expression (i) is regulated by CspC and CspE at physiological temperature or cold shock conditions and (ii) depends on the nucleic acid melting function of CspE. Bioinformatic analysis of the latter group reveals that many of those genes contain promoter-proximal sequences that can block transcript elongation and may be targeted by the nucleic acid melting function of CspE.
机译:大肠杆菌冷休克蛋白CspA家族由9种蛋白(CspA至CspI)组成,其中两种CspE和CspC在37°C时组成性产生,并参与调节编码应激反应蛋白的基因的表达,但也可以执行冷驯化过程中的基本功能。在这项研究中,我们分析了缺少cspE和cspC的细胞以及个别过表达这些蛋白质的细胞或无法融化核酸并在冷驯化方面存在缺陷的CspE突变体的总体转录谱。分析揭示了其表达(i)在生理温度或冷休克条件下受CspC和CspE调节的基因组,以及(ii)取决于CspE的核酸融解功能的基因集。后一组的生物信息学分析表明,这些基因中有许多含有启动子附近序列,这些序列可以阻断转录本的延伸,并可能被CspE的核酸融解功能所靶向。

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