Department of Animal Sciences, School of Life Sciences, University of Hyderabad, Prof. C.R. Rao Road, Gachibowli, Hyderabad 500046, India.
Microbiology (Reading). 2014 Aug;160(Pt 8):1637-1647. doi: 10.1099/mic.0.079640-0. Epub 2014 May 22.
The influence of iron levels on the transcription of the hupB gene in Mycobacterium tuberculosis is the focus of this study. Studies in our laboratory showed HupB to be co-expressed with the two siderophores in low-iron organisms. Mycobactin biosynthesis is repressed by the IdeR-Fe(2+) complex that binds the IdeR box in the mbtB promoter. Recently, we demonstrated the positive regulatory effect of HupB on mycobactin biosynthesis by demonstrating its binding to a 10 bp HupB box in the mbtB promoter. Earlier, we observed that HupB, expressed maximally in low-iron media (0.02 µg Fe ml(-1); 0.36 µM Fe) was still detectable at 8 µg Fe ml(-1) (144 µM Fe) when the siderophores were absent and complete repression was seen only at 12 µg Fe ml(-1) (216 µM Fe). In this study, we observed elevated levels of hupB transcripts in iron-limited organisms. IdeR, and not FurA, functioned as the iron regulator, by binding to two IdeR boxes in the hupB promoter. Interestingly, the 10 bp HupB box, first reported in the mbtB promoter, was identified in the hupB promoter. Using DNA footprinting and electrophoretic mobility shift assays, we demonstrated the functionality of the HupB box and the two IdeR boxes. The high hupB transcript levels expressed by the organism and the in vitro protein-DNA interaction studies led us to hypothesize the sequence of events occurring in response to changes in the intracellular iron concentration, emphasizing the roles played by IdeR and HupB in iron homeostasis.
本研究关注铁水平对结核分枝杆菌 hupB 基因转录的影响。我们实验室的研究表明,HupB 与两种低铁生物体中的铁载体共表达。分枝菌酸生物合成受 IdeR-Fe(2+) 复合物的抑制,该复合物结合 mbtB 启动子中的 IdeR 盒。最近,我们通过证明 HupB 与 mbtB 启动子中的 10 bp HupB 盒结合,证明了其对分枝菌酸生物合成的正调控作用。早些时候,我们观察到 HupB 在缺铁培养基(0.02 µg Fe ml(-1);0.36 µM Fe)中表达最大,当铁载体不存在时,在 8 µg Fe ml(-1)(144 µM Fe)时仍可检测到,而在 12 µg Fe ml(-1)(216 µM Fe)时则完全受到抑制。在这项研究中,我们观察到在缺铁生物体中 hupB 转录本水平升高。IdeR 而不是 FurA 作为铁调节剂起作用,通过结合 hupB 启动子中的两个 IdeR 盒。有趣的是,首先在 mbtB 启动子中报道的 10 bp HupB 盒在 hupB 启动子中被鉴定出来。通过 DNA 足迹法和电泳迁移率变动分析,我们证明了 HupB 盒和两个 IdeR 盒的功能。生物体表达的高 hupB 转录本水平和体外蛋白-DNA 相互作用研究使我们假设了响应细胞内铁浓度变化而发生的事件顺序,强调了 IdeR 和 HupB 在铁稳态中的作用。