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Regulation of Dissimilatory Fe(III) Reduction Activity in Shewanella putrefaciens

机译:腐乳希瓦氏菌异化Fe(III)还原活性的调控

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摘要

Under anaerobic conditions, Shewanella putrefaciens is capable of respiratory-chain-linked, high-rate dissimilatory iron reduction via both a constitutive and inducible Fe(III)-reducing system. In the presence of low levels of dissolved oxygen, however, iron reduction by this microorganism is extremely slow. Fe(II)-trapping experiments in which Fe(III) and O2 were presented simultaneously to batch cultures of S. putrefaciens indicated that autoxidation of Fe(II) was not responsible for the absence of Fe(III) reduction. Inhibition of cytochrome oxidase with CN resulted in a high rate of Fe(III) reduction in the presence of dissolved O2, which suggested that respiratory control mechanisms did not involve inhibition of Fe(III) reductase activities or Fe(III) transport by molecular oxygen. Decreasing the intracellular ATP concentrations by using an uncoupler, 2,4-dinitrophenol, did not increase Fe(III) reduction, indicating that the reduction rate was not controlled by the energy status of the cell. Control of electron transport at branch points could account for the observed pattern of respiration in the presence of the competing electron acceptors Fe(III) and O2.
机译:在厌氧条件下,腐烂希瓦氏菌能够通过本构和诱导型Fe(III)还原系统进行呼吸链连接的高速率异化铁还原。但是,在溶解氧含量低的情况下,这种微生物对铁的还原非常缓慢。 Fe(II)捕集实验中,同时向腐烂链球菌的分批培养物中提供了Fe(III)和O2,表明Fe(II)的自氧化作用与缺少Fe(III)还原无关。在溶解的氧气存在下,用CN -抑制细胞色素氧化酶可导致高的Fe(III)还原速率,这表明呼吸控制机制不涉及抑制Fe(III)还原酶活性或Fe(III)通过分子氧运输。通过使用解偶联剂2,4-二硝基苯酚降低细胞内ATP浓度不会增加Fe(III)的还原,表明还原速率不受细胞能量状态的控制。控制电子在分支点的传输可以解释在竞争性电子受体Fe(III)和O2存在下观察到的呼吸模式。

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