Wennerhold Julia, Bott Michael
Institut für Biotechnologie 1, Forschungszentrum Jülich, D-52425 Jülich, Germany.
J Bacteriol. 2006 Apr;188(8):2907-18. doi: 10.1128/JB.188.8.2907-2918.2006.
Previous studies with Corynebacterium diphtheriae and Mycobacterium species revealed that the transcriptional regulator DtxR and its ortholog IdeR play a central role in the control of iron metabolism. In the present work, we used genome-based approaches to determine the DtxR regulon of Corynebacterium glutamicum, a nonpathogenic relative of C. diphtheriae. First, global gene expression of a dtxR deletion mutant was compared with that of the wild type using DNA microarrays. Second, we used a computer-based approach to identify 117 putative DtxR binding sites in the C. glutamicum genome. In the third step, 74 of the corresponding genome regions were amplified by PCR, 51 of which were shifted by the DtxR protein. Finally, we analyzed which of the genes preceded by a functional DtxR binding site showed altered mRNA levels in the transcriptome comparison. Fifty-one genes organized in 27 putative operons displayed an increased mRNA level in the DeltadtxR mutant and thus are presumably repressed by DtxR. The majority of these genes are obviously involved in iron acquisition, three encode transcriptional regulators, e.g., the recently identified repressor of iron proteins RipA, and the others encode proteins of diverse or unknown functions. Thirteen genes showed a decreased mRNA level in the DeltadtxR mutant and thus might be activated by DtxR. This group included the suf operon, whose products are involved in the formation and repair of iron-sulfur clusters, and several genes for transcriptional regulators. Our results clearly establish DtxR as the master regulator of iron-dependent gene expression in C. glutamicum.
先前对白喉棒状杆菌和分枝杆菌属的研究表明,转录调节因子DtxR及其同源物IdeR在铁代谢控制中起核心作用。在本研究中,我们采用基于基因组的方法来确定谷氨酸棒状杆菌(白喉棒状杆菌的非致病亲缘菌)的DtxR调控子。首先,使用DNA微阵列将dtxR缺失突变体的全局基因表达与野生型进行比较。其次,我们采用基于计算机的方法在谷氨酸棒状杆菌基因组中鉴定出117个假定的DtxR结合位点。在第三步中,通过PCR扩增了74个相应的基因组区域,其中51个区域被DtxR蛋白移位。最后,我们分析了在转录组比较中,哪些前面带有功能性DtxR结合位点的基因显示出mRNA水平的改变。27个假定操纵子中的51个基因在DeltadtxR突变体中显示出mRNA水平升高,因此可能受到DtxR的抑制。这些基因中的大多数显然参与铁的摄取,三个编码转录调节因子,例如最近鉴定出的铁蛋白阻遏物RipA,其他基因编码功能多样或未知的蛋白质。13个基因在DeltadtxR突变体中显示出mRNA水平降低,因此可能被DtxR激活。该组包括suf操纵子,其产物参与铁硫簇的形成和修复,以及几个转录调节因子基因。我们的结果清楚地表明DtxR是谷氨酸棒状杆菌中铁依赖性基因表达的主要调节因子。