Leyn Semen A, Rodionov Dmitry A
A. A. Kharkevich Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow, Russia.
A. A. Kharkevich Institute for Information Transmission Problems, Russian Academy of Sciences, Moscow, Russia Sanford-Burnham Medical Research Institute, La Jolla, California, USA
J Bacteriol. 2015 Feb;197(3):451-8. doi: 10.1128/JB.02386-14. Epub 2014 Nov 17.
The DtxR family consists of metal-dependent transcription factors (DtxR-TFs) that regulate the expression of genes involved in metal homeostasis in the cell. The majority of characterized DtxR-TFs belong to Bacteria. In the current work, we applied a comparative genomics approach to predict DNA-binding sites and reconstruct regulons for DtxR-TFs in Archaea. As a result, we inferred 575 candidate binding sites for 139 DtxR-TFs in 77 genomes from 15 taxonomic orders. Novel DNA motifs of archaeal DtxR-TFs that have a common palindromic structure were classified into 10 distinct groups. By combining functional regulon reconstructions with phylogenetic analysis, we selected 28 DtxR-TF clades and assigned them metal specificities and regulator names. The reconstructed FetR (ferrous iron), MntR (manganese), and ZntR (zinc) regulons largely contain known or putative metal uptake transporters from the FeoAB, NRAMP, ZIP, and TroA families. A novel family of putative iron transporters (named Irt), including multiple FetR-regulated paralogs, was identified in iron-oxidizing Archaea from the Sulfolobales order. The reconstructed DtxR-TF regulons were reconciled with available transcriptomics data in Archaeoglobus, Halobacterium, and Thermococcus spp.
DtxR家族由依赖金属的转录因子(DtxR-TFs)组成,这些转录因子调节细胞内参与金属稳态的基因表达。大多数已鉴定的DtxR-TFs属于细菌。在当前的工作中,我们应用比较基因组学方法来预测古菌中DtxR-TFs的DNA结合位点并重建调控子。结果,我们从15个分类目中的77个基因组中推断出139个DtxR-TFs的575个候选结合位点。具有共同回文结构的古菌DtxR-TFs的新DNA基序被分为10个不同的组。通过将功能性调控子重建与系统发育分析相结合,我们选择了28个DtxR-TF进化枝,并为它们指定了金属特异性和调节因子名称。重建的FetR(亚铁)、MntR(锰)和ZntR(锌)调控子主要包含来自FeoAB、NRAMP、ZIP和TroA家族的已知或推定的金属摄取转运蛋白。在来自硫化叶菌目的铁氧化古菌中鉴定出一个新的推定铁转运蛋白家族(命名为Irt),包括多个受FetR调控的旁系同源物。重建的DtxR-TF调控子与嗜热栖热菌、盐杆菌和嗜热栖热菌属中现有的转录组学数据进行了比对。