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超过1000个基因参与大肠杆菌的DNA损伤反应。

Over 1000 genes are involved in the DNA damage response of Escherichia coli.

作者信息

Khil Pavel P, Camerini-Otero R Daniel

机构信息

Genetics and Biochemistry Branch, NIDDK, National Institutes of Health, 10 Center Drive, Bethesda, MD 20892, USA.

出版信息

Mol Microbiol. 2002 Apr;44(1):89-105. doi: 10.1046/j.1365-2958.2002.02878.x.

Abstract

Changes in gene expression after treatment of Escherichia coli cultures with mitomycin C were assessed using gene array technology. Unexpectedly, a large number of genes (nearly 30% of all genes) displayed significant changes in their expression level. Analysis and classification of expression profiles of the corresponding genes allowed us to assign this large number of genes into one or two dozen small clusters of genes with similar expression profiles. This assignment allowed us to describe systematically the changes in the level of gene expression in response to DNA damage. Among the damage-induced genes, more than 100 are novel. From those genes involved in DNA metabolism that have not previously been shown to be induced by DNA damage, the mutS gene involved in mismatch repair is especially noteworthy. In addition to the SOS response, we observed the induction of other stress response pathways, such as those of oxidative stress and osmotic protection. Among the genes that are downregulated in response to DNA damage are numerous protein biosynthesis genes. Analysis of the gene expression data highlighted the essential involvement of sigma(s)-regulated genes and the general stress response network in the response to DNA damage.

摘要

利用基因芯片技术评估了用丝裂霉素C处理大肠杆菌培养物后基因表达的变化。出乎意料的是,大量基因(几乎占所有基因的30%)的表达水平出现了显著变化。对相应基因表达谱的分析和分类使我们能够将这大量基因归入一二十个具有相似表达谱的小基因簇中。这种归类使我们能够系统地描述基因表达水平对DNA损伤的响应变化。在损伤诱导的基因中,有100多个是新发现的。在那些先前未显示受DNA损伤诱导的参与DNA代谢的基因中,参与错配修复的mutS基因尤为值得注意。除了SOS反应外,我们还观察到其他应激反应途径的诱导,如氧化应激和渗透保护途径。在对DNA损伤作出反应而下调的基因中,有许多是蛋白质生物合成基因。基因表达数据分析突出了σ因子调控基因和一般应激反应网络在对DNA损伤的反应中的重要参与。

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