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Cell lysis directed by σE in early stationary phase and effect of induction of the rpoE gene on global gene expression in Escherichia coli

机译:σe在早期固定阶段的细胞裂解和Rpoe基因诱导对大肠杆菌的全球基因表达的影响

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It has been shown that Escherichia coli cells with increased expression of the rpoE gene encoding σE exhibit enhanced cell lysis in early stationary phase. Further analysis of the lysis phenomenon was performed using a transient expression system of the rpoE gene and by DNA microarray. The former analysis revealed a σE-directed cell lysis, specific for early stationary phase but not for the exponential phase. The microarray analysis with RNAs from exponential and early stationary phase cells revealed that a large number of genes were up- or down-regulated when the rpoE gene was induced, and that several genes were induced in a phase-specific manner. The upregulated genes include many previously identified σE regulon genes, suggesting that a large number of genes are under the control of σE in this organism. These genes are involved in various cellular activities, including the cell envelope, cellular processes, regulatory functions, transport and translation. Genes that are presumably related to phase-specific cell lysis in E. coli are discussed.
机译:已经表明,具有增加的RPOE基因表达的大肠杆菌细胞σe在早期固定相中表现出增强的细胞裂解。使用RPOE基因的瞬时表达系统和DNA微阵列进行裂解现象的进一步分析。前一个分析揭示了Σ对导的细胞裂解,针对早期固定阶段,但不是指数阶段。具有来自指数和早期固定相细胞的RNA的微阵列分析显示,当诱导RPOE基因时,大量基因被上调,并且以相特异性的方式诱导几种基因。上述基因包括许多先前鉴定的ΣE调节基因,表明该生物体中的大量基因受到ΣE的控制。这些基因涉及各种细胞活性,包括细胞包膜,细胞过程,监管功能,运输和翻译。讨论了与大肠杆菌中的相对相细胞裂解有关的基因。

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