Quatrini Raquel, Lefimil Claudia, Veloso Felipe A, Pedroso Inti, Holmes David S, Jedlicki Eugenia
Center for Bioinformatics and Genome Biology, MIFAB, Life Science Foundation and Andrés Bello University, Santiago, Chile.
Nucleic Acids Res. 2007;35(7):2153-66. doi: 10.1093/nar/gkm068. Epub 2007 Mar 13.
The gamma-proteobacterium Acidithiobacillus ferrooxidans lives in extremely acidic conditions (pH 2) and, unlike most organisms, is confronted with an abundant supply of soluble iron. It is also unusual in that it oxidizes iron as an energy source. Consequently, it faces the challenging dual problems of (i) maintaining intracellular iron homeostasis when confronted with extremely high environmental loads of iron and (ii) of regulating the use of iron both as an energy source and as a metabolic micronutrient. A combined bioinformatic and experimental approach was undertaken to identify Fur regulatory sites in the genome of A. ferrooxidans and to gain insight into the constitution of its Fur regulon. Fur regulatory targets associated with a variety of cellular functions including metal trafficking (e.g. feoPABC, tdr, tonBexbBD, copB, cdf), utilization (e.g. fdx, nif), transcriptional regulation (e.g. phoB, irr, iscR) and redox balance (grx, trx, gst) were identified. Selected predicted Fur regulatory sites were confirmed by FURTA, EMSA and in vitro transcription analyses. This study provides the first model for a Fur-binding site consensus sequence in an acidophilic iron-oxidizing microorganism and lays the foundation for future studies aimed at deepening our understanding of the regulatory networks that control iron uptake, homeostasis and oxidation in extreme acidophiles.
γ-变形菌嗜酸氧化亚铁硫杆菌生活在极端酸性条件(pH 2)下,与大多数生物不同,它面临着大量可溶性铁的供应。它的另一个不同寻常之处在于,它以氧化铁作为能量来源。因此,它面临着两个具有挑战性的问题:(i)当面临极高的环境铁负荷时,维持细胞内铁稳态;(ii)调节铁作为能量来源和代谢微量营养素的利用。采用生物信息学和实验相结合的方法,在嗜酸氧化亚铁硫杆菌基因组中鉴定Fur调控位点,并深入了解其Fur调控子的组成。鉴定出了与多种细胞功能相关的Fur调控靶点,包括金属转运(如feoPABC、tdr、tonBexbBD、copB、cdf)、利用(如fdx、nif)、转录调控(如phoB、irr、iscR)和氧化还原平衡(grx、trx、gst)。通过FURTA、EMSA和体外转录分析证实了选定的预测Fur调控位点。本研究为嗜酸铁氧化微生物中Fur结合位点共有序列提供了首个模型,并为今后旨在加深我们对控制极端嗜酸菌中铁摄取、稳态和氧化的调控网络理解的研究奠定了基础。