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A New Iron-oxidizing/O2-reducing Supercomplex Spanning Both Inner and Outer Membranes, Isolated from the Extreme Acidophile Acidithiobacillus ferrooxidans*

机译:跨越两者的新型铁氧化/氧还原超复合物 内膜和外膜,与极端嗜酸菌隔离 酸性硫杆菌 亚铁氧化物*

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摘要

The iron respiratory chain of the acidophilic bacterium Acidithiobacillus ferrooxidans involves various metalloenzymes. Here we demonstrate that the oxygen reduction pathway from ferrous iron (named downhill pathway) is organized as a supercomplex constituted of proteins located in the outer and inner membranes as well as in the periplasm. For the first time, the outer membrane-bound cytochrome c Cyc2 was purified, and we showed that it is responsible for iron oxidation and determined that its redox potential is the highest measured to date for a cytochrome c. The organization of metalloproteins inside the supramolecular structure was specified by protein-protein interaction experiments. The isolated complex spanning the two membranes had iron oxidase as well as oxygen reductase activities, indicating functional electron transfer between the first iron electron acceptor, Cyc2, and the CuA center of cytochrome c oxidase aa3. This is the first characterization of a respirasome from an acidophilic bacterium. In Acidithiobacillus ferrooxidans,O2 reduction from ferrous iron must be coupled to the energy-consuming reduction of NAD+(P) from ferrous iron (uphill pathway) required for CO2 fixation and other anabolic processes. Besides the proteins involved in the O2 reduction, there were additional proteins in the supercomplex, involved in uphill pathway (bc complex and cytochrome Cyc42), suggesting a possible physical link between these two pathways.
机译:嗜酸细菌酸性氧化铁硫杆菌的铁呼吸链涉及各种金属酶。在这里,我们证明了来自亚铁的氧还原途径(称为下坡途径)被组织为由位于外膜和内膜以及周质中的蛋白质组成的超复合物。首次纯化了与外膜结合的细胞色素c Cyc2,我们发现它与铁氧化有关,并确定其氧化还原电位是迄今为止对细胞色素c测得的最高值。超分子结构内部的金属蛋白的组织是通过蛋白质-蛋白质相互作用实验确定的。跨过两个膜的分离的复合物具有铁氧化酶以及氧还原酶活性,表明功能性电子在第一个铁电子受体Cyc2和细胞色素c氧化酶aa3的CuA中心之间转移。这是来自嗜酸细菌的呼吸小体的第一个特征。在酸性氧化铁硫杆菌中,亚铁中的O2还原必须与固定二氧化碳和其他合成代谢过程所需的亚铁(上坡途径)中NAD +(P)的能耗降低相结合。除了参与减少O2的蛋白质外,超复合物中还有其他蛋白质参与上坡途径(BC复合物和细胞色素Cyc42),表明这两种途径之间可能存在物理联系。

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