...
首页> 外文期刊>Chemical geology >Redox dynamics and equilibria of c-type cytochromes in the presence of Fe (II) under anoxic conditions: Insights into enzymatic iron oxidation
【24h】

Redox dynamics and equilibria of c-type cytochromes in the presence of Fe (II) under anoxic conditions: Insights into enzymatic iron oxidation

机译:在缺氧条件下Fe(II)存在下C型细胞变色的氧化还原动力学和均力:酶促氧化铁氧化

获取原文
获取原文并翻译 | 示例

摘要

Although c-type cytochrome (c-Cyt) involvement in many biological Fe(II) oxidation processes under micro aerobic or anoxic conditions has been proposed, the detailed understanding of the molecular redox reaction of c-Cyts in the presence of Fe2+ is still lacking. In this study, the in situ spectral kinetics and spectroelectrochemistry of a commercial c-Cyt as a model protein was investigated under various environmental conditions (Fe(II) concentration, pH, and ionic strength). The concentrations of reduced c-Cyt (c-Cyt(red)) increased gradually over time and then reached a steady state. The c-Cyt(red) generation rate constants (k) increased with increasing initial Fe(II) concentrations (5-1000 mu M), because the redox potentials (Eh) of Fe(II)/Fe(III) were lower with higher Fe (II) concentrations. The k values for c-Cyt(red) generation increased with pH (5.5-8.0). The Eh of Fe(II)/Fe(III) decreased substantially with a slope of 0.177 per pH unit, revealing that the reduction capacity of Fe2+ increased dramatically with pH elevation. In addition, spectroelectrochemistry results revealed that the extent of c-Cyt(red) was strongly dependent on pH, indicating that H+ was involved in the c-Cyt reduction process. Hence, the pH effects were attributed to the involvements of H+ in the reactions between Fe2+ and c-Cyt. The k values for cCytr(ed) generation decreased with increasing NaCl concentrations (0-1.0 M). The correlations between the kinetic rates and the concentrations/activities of Fe(II) species are discussed, with the results demonstrating that Fe2+ activity was the major factor influencing the reaction kinetics with different ionic strength. This study provides insights into the mechanisms of enzymatic iron oxidation process under anoxic conditions at the molecular level.
机译:尽管已经提出了C型细胞色素(C-CYT)参与在微食病或缺氧条件下的许多生物Fe(II)氧化过程中,但仍然缺乏对C-Cyts的分子氧化还原反应的详细了解。在本研究中,在各种环境条件下研究了商业C-CYT的原位光谱动力学和商业C-CYT的光谱电化学系统(Fe(II)浓度,pH和离子强度)。减少的C-CYT(C-CYT(红色))随时间逐渐增加,然后达到稳定状态。随着初始Fe(II)浓度(5-1000μm)的增加,C-CYT(红色)产生率常数(K)增加,因为Fe(II)/ Fe(III)的氧化还原电位(EH)较低更高的Fe(II)浓度。 C-CYT(红色)产生的K值随pH(5.5-8.0)而增加。 Fe(II)/ Fe(III)的EH基本上减少,每pH单位斜率为0.177,揭示Fe2 +的减少能力随pH升高而增加。此外,光谱电化学结果显示C-CYT(红色)的程度强烈依赖于pH,表明​​H +参与C-CYT还原过程。因此,pH效应归因于H +在Fe2 +和C-Cyt之间的反应中的参与。 CCYTR(ED)产生的K值随着NaCl浓度的增加而降低(0-1.0μm)。讨论了动力率和Fe(II)物种的浓度/活性之间的相关性,结果表明Fe2 +活性是影响具有不同离子强度的反应动力学的主要因素。本研究提供了在分子水平下缺氧条件下酶氧化铁氧化过程机制的见解。

著录项

  • 来源
    《Chemical geology 》 |2017年第2017期| 共8页
  • 作者单位

    Guangdong Inst Ecoenvironm &

    Soil Sci Guangdong Key Lab Integrated Agro Environm Pollut Guangzhou 510650 Guangdong Peoples R China;

    Guangdong Inst Ecoenvironm &

    Soil Sci Guangdong Key Lab Integrated Agro Environm Pollut Guangzhou 510650 Guangdong Peoples R China;

    Guangdong Inst Ecoenvironm &

    Soil Sci Guangdong Key Lab Integrated Agro Environm Pollut Guangzhou 510650 Guangdong Peoples R China;

    Guangdong Inst Ecoenvironm &

    Soil Sci Guangdong Key Lab Integrated Agro Environm Pollut Guangzhou 510650 Guangdong Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球化学 ;
  • 关键词

    c-Type cytochromes; Enzymatic Fe(II) oxidation; Kinetics; Spectroelectrochemistry;

    机译:C型细胞学;酶Fe(II)氧化;动力学;光谱电化学;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号