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首页> 外文期刊>Scientific reports. >In Situ Spectral Kinetics of Cr(VI) Reduction by c-Type Cytochromes in A Suspension of Living Shewanella putrefaciens 200
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In Situ Spectral Kinetics of Cr(VI) Reduction by c-Type Cytochromes in A Suspension of Living Shewanella putrefaciens 200

机译:c型细胞色素在腐殖酸希瓦氏菌的悬浮液中Cr(VI)还原的原位光谱动力学200

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Although c-type cytochromes (c-Cyts) mediating metal reduction have been mainly investigated with in vitro purified proteins of dissimilatory metal reducing bacteria, the in vivo behavior of c-Cyts is still unclear given the difficulty in measuring the proteins of intact cells. Here, c-Cyts in living Shewanella putrefaciens 200 (SP200) was successfully quantified using diffuse-transmission UV/Vis spectroscopy due to the strong absorbance of hemes, and the in situ spectral kinetics of Cr(VI) reduction by c-Cyts were examined over time. The reduced product Cr(III) observed on the cell surface may play a role in inhibiting the Cr(VI) reduction and reducing the cell numbers with high concentrations (200?μM) of Cr(VI) evidenced by the 16S rRNA analysis. A brief kinetic model was established with two predominant reactions, redox transformation of c-Cyts and Cr(VI) reduction by reduced c-Cyts, but the fitting curves were not well-matched with c-Cyts data. The Cr(III)-induced inhibitory effect to the cellular function of redox transformation of c-Cyts was then added to the model, resulting in substantially improved the model fitting. This study provides a case of directly examining the reaction properties of outer-membrane enzyme during microbial metal reduction processes under physiological conditions.
机译:尽管主要用异化金属还原细菌的体外纯化蛋白研究了介导金属还原的c型细胞色素(c-Cyts),但由于难以测量完整细胞的蛋白,因此c-Cyts的体内行为仍不清楚。在这里,由于血红素的强吸收性,使用扩散透射紫外/可见光谱法成功地定量了活腐烂希瓦氏菌200(SP200)中的c-Cyts,并研究了c-Cyts还原Cr(VI)的原位光谱动力学。随着时间的推移。通过16S rRNA分析证明,在高浓度(> 200?μM)的Cr(VI)中,在细胞表面观察到的还原产物Cr(III)可能在抑制Cr(VI)的还原和减少细胞数量方面起作用。建立了一个具有两个主要反应的简短动力学模型,即c-Cyts的氧化还原转化和还原c-Cyts还原Cr(VI),但拟合曲线与c-Cyts数据并不完全匹配。然后将Cr(III)诱导的对c-Cyts氧化还原转化的细胞功能的抑制作用添加到模型中,从而大大改善了模型拟合。本研究提供了一个直接研究在生理条件下微生物金属还原过程中外膜酶反应特性的案例。

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