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Regulation of expression of the PetI operon involved in iron oxidation in the biomining bacterium Acidithiobacillus ferrooxidans

机译:生物化酸酸酸酸氧化碳酸纤维酸的紫葡萄氧化的佩蒂操纵子的表达调节

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Acidithiobacillus ferrooxidans is an acidophilic, chemolithotrophic bacterium that can gain energy and electrons by the oxidation of iron. PetI is an operon that encodes electron transport proteins involved in the reverse flow of electrons from iron to the NAD complex during iron oxidation. Although a substantial body of evidence describes the components and pathways for iron oxidation, little is known about their regulation. It is proposed that environmental iron concentrations and oxygen levels could influence the ability of A. ferrooxidans to oxidize iron as an energy source. We report initial investigators into the possibility that the expression of the PetI operon is regulated, inter alia, by the master transcription factor controlling iron uptake and homeostasis (Fur) and anaerobic metabolism (FNR). Potential DNA binding sites (boxes) for both regulators were predicted in the region of the PetI operon promoter and the binding of Fur to its cognate box was demonstrated experimentally. This represents the first attempt to unravel the mechanisms involved in the regulation of iron oxidation.
机译:氧化亚铁硫杆菌是嗜酸的,化能无机营养菌可以通过铁的氧化获得能量和电子。 PETI是操纵子编码的电子参与电子从铁到NAD复杂铁氧化期间反向流动转运蛋白。尽管有大量的证据体描述组件和铁的氧化途径,鲜为人知的是,他们的监管。建议将环境铁浓度和氧气水平可能影响A.杆菌的氧化铁作为能源的能力。我们报告初始进入调查的可能性,即所述PETI操纵子的表达受到调控,除其他外,由主转录因子控制的铁摄取和内环境稳定(毛皮)和无氧代谢(FNR)。潜在的DNA结合位点(框)为两个稳压器在PETI操纵子启动子的区域进行了预测,并实验证实毛皮与其同源框的结合。这代表了第一次尝试解开参与铁氧化的调控机制。

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