Bjarnason Jaime, Southward Carolyn M, Surette Michael G
Department of Microbiology and Infectious Diseases, Health Sciences Centre, University of Calgary, Calgary, Alberta, Canada T2N 4N1.
J Bacteriol. 2003 Aug;185(16):4973-82. doi: 10.1128/JB.185.16.4973-4982.2003.
The importance of iron to bacteria is shown by the presence of numerous iron-scavenging and transport systems and by many genes whose expression is tightly regulated by iron availability. We have taken a global approach to gene expression analysis of Salmonella enterica serovar Typhimurium in response to iron by combining efficient, high-throughput methods with sensitive, luminescent reporting of gene expression using a random promoter library. Real-time expression profiles of the library were generated under low- and high-iron conditions to identify iron-regulated promoters, including a number of previously identified genes. Our results indicate that approximately 7% of the genome may be regulated directly or indirectly by iron. Further analysis of these clones using a Fur titration assay revealed three separate classes of genes; two of these classes consist of Fur-regulated genes. A third class was Fur independent and included both negatively and positively iron-responsive genes. These may reflect new iron-dependent regulons. Iron-responsive genes included iron transporters, iron storage and mobility proteins, iron-containing proteins (redox proteins, oxidoreductases, and cytochromes), transcriptional regulators, and the energy transducer tonB. By identifying a wide variety of iron-responsive genes, we extend our understanding of the global effect of iron availability on gene expression in the bacterial cell.
铁对细菌的重要性体现在众多铁清除和转运系统的存在,以及许多基因的表达受铁可用性严格调控上。我们采用了一种全局方法,通过将高效、高通量方法与使用随机启动子文库的灵敏、发光基因表达报告相结合,来分析鼠伤寒沙门氏菌对铁的基因表达响应。在低铁和高铁条件下生成文库的实时表达谱,以鉴定铁调控的启动子,包括一些先前已鉴定的基因。我们的结果表明,基因组中约7%可能直接或间接受铁调控。使用Fur滴定法对这些克隆进行进一步分析,揭示了三类不同的基因;其中两类由Fur调控基因组成。第三类与Fur无关,包括负性和正性铁响应基因。这些可能反映了新的铁依赖性调控子。铁响应基因包括铁转运蛋白、铁储存和移动蛋白、含铁蛋白(氧化还原蛋白、氧化还原酶和细胞色素)、转录调节因子以及能量转导蛋白tonB。通过鉴定多种铁响应基因,我们扩展了对铁可用性对细菌细胞基因表达的全局影响的理解。