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李斯特菌属对铁限制和 Fur 突变的转录组反应。

Transcriptomic response of Listeria monocytogenes to iron limitation and Fur mutation.

机构信息

School of Biological Sciences, Illinois State University, Normal, IL 61790-4120, USA.

出版信息

Appl Environ Microbiol. 2010 Jan;76(2):406-16. doi: 10.1128/AEM.01389-09. Epub 2009 Nov 20.

Abstract

Iron is required by almost all bacteria, but concentrations above physiological levels are toxic. In bacteria, intracellular iron is regulated mostly by the ferric uptake regulator, Fur, or a similar functional protein. Iron limitation results in the regulation of a number of genes, especially those involved in iron uptake. A subset of these genes is the Fur regulon under the control of Fur. In the present study, we have identified Fur- and iron-regulated genes in Listeria monocytogenes by DNA microarray analysis using a fur mutant and its isogenic parent. To identify genes regulated exclusively in response to iron limitation, the whole-genome transcriptional responses to the iron limitation of a fur mutant and its isogenic parent were compared. Fur-regulated genes were identified by comparing the transcriptional profile of the parent with the transcriptional profile of the isogenic fur mutant. Our studies have identified genes regulated exclusively in response to iron and those that are negatively regulated by Fur. We have identified at least 14 genes that were negatively regulated directly by Fur. Under iron-limited conditions, these genes were upregulated, while the expression of fur was found to be downregulated. To further investigate the regulation of fur in response to iron, an ectopic fur promoter-lacZ transcriptional fusion strain was constructed, and its isogenic fur and perR mutant derivatives were generated in L. monocytogenes 10403S. Analysis of the iron limitation of the perR mutant indicated that the regulation of genes under the negative control of Fur was significantly inhibited. Our results indicate that Fur and PerR proteins negatively regulate fur and that under iron-limited conditions, PerR is required for the negative regulation of genes controlled by Fur.

摘要

铁几乎是所有细菌所必需的,但浓度超过生理水平则具有毒性。在细菌中,细胞内铁主要通过三价铁摄取调控因子 Fur 或类似功能的蛋白进行调控。铁限制会导致许多基因的调控,特别是那些与铁摄取有关的基因。这些基因的一部分是 Fur 调控的 Fur 调控基因。在本研究中,我们通过使用 fur 突变体及其同基因亲本的 DNA 微阵列分析,鉴定了李斯特菌中的 Fur 和铁调节基因。为了鉴定仅对铁限制有反应的基因,我们比较了 fur 突变体及其同基因亲本对铁限制的全基因组转录反应。通过比较亲本的转录谱与同基因 fur 突变体的转录谱,鉴定了 Fur 调节基因。我们的研究鉴定了仅对铁限制有反应的基因和受 Fur 负调控的基因。我们至少鉴定了 14 个受 Fur 直接负调控的基因。在铁限制条件下,这些基因上调,而 fur 的表达则下调。为了进一步研究 Fur 对铁的响应调节,我们构建了一个异位 fur 启动子-lacZ 转录融合株,并在李斯特菌 10403S 中生成了其同基因 fur 和 perR 突变体衍生物。对 perR 突变体的铁限制分析表明,受 Fur 负调控的基因的调节受到显著抑制。我们的结果表明,Fur 和 PerR 蛋白负调控 fur,并且在铁限制条件下,PerR 是 Fur 控制的基因负调控所必需的。

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