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鼠疫耶尔森菌中铁同化与fur调控的全局分析

Global analysis of iron assimilation and fur regulation in Yersinia pestis.

作者信息

Zhou Dongsheng, Qin Long, Han Yanping, Qiu Jingfu, Chen Zeliang, Li Bei, Song Yajun, Wang Jin, Guo Zhaobiao, Zhai Junhui, Du Zongmin, Wang Xiaoyi, Yang Ruifu

机构信息

State Key laboratory of Pathogen and Biosecurity, Army Center for Microbial Detection and Research, Institute of Microbiology and Epidemiology, Academy of Military Medical Sciences, Beijing, China.

出版信息

FEMS Microbiol Lett. 2006 May;258(1):9-17. doi: 10.1111/j.1574-6968.2006.00208.x.

Abstract

Using DNA microarray analysis, mRNA levels from wild-type Yersinia pestis cells treated with the iron chelator 2,2'-dipyridyl were compared with those supplemented with excessive iron, and subsequent to this, gene expression in the fur mutant was compared with that in the wild-type strain under iron rich conditions. The microarray analysis revealed many iron transport or storage systems that had been induced in response to the iron starvation, which is mediated by the Fur protein, using the iron as a co-repressor. The iron-Fur complex also affected some genes involved in various non-iron functions (ribonucleoside-diphosphate reductase, membrane proteins, electron transport and oxidative defense, etc.). The Fur protein still participated in the regulation of genes involved in broad cellular processes (virulence factors, pesticin activity, haemin storage and many proteins with unknown functions) that were not affected by iron depletion conditions. In addition to its classical negative regulatory activities, the Fur protein activates gene transcription. Using bioinformatics tools, we were able to predict the Y. pestis Fur box sequence that was clearly the over-presented motif in the promoter regions of members of the iron-Fur modulon.

摘要

利用DNA微阵列分析,将用铁螯合剂2,2'-联吡啶处理的野生型鼠疫耶尔森氏菌细胞的mRNA水平与补充过量铁的细胞的mRNA水平进行比较,随后,在富铁条件下,将fur突变体中的基因表达与野生型菌株中的基因表达进行比较。微阵列分析揭示了许多因铁饥饿而被诱导的铁转运或储存系统,这是由Fur蛋白介导的,Fur蛋白以铁作为辅阻遏物。铁-Fur复合物还影响了一些参与各种非铁功能的基因(核糖核苷二磷酸还原酶、膜蛋白、电子传递和氧化防御等)。Fur蛋白仍然参与了广泛细胞过程中相关基因的调控(毒力因子、鼠疫菌素活性、血红素储存以及许多功能未知的蛋白质),这些过程不受铁缺乏条件的影响。除了其经典的负调控活性外,Fur蛋白还激活基因转录。利用生物信息学工具,我们能够预测鼠疫耶尔森氏菌Fur框序列,该序列显然是铁-Fur调节子成员启动子区域中过度出现的基序。

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