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Oxyl and Hydroxyl Radical Transfer in Mitochondrial Amidoxime Reducing Component-Catalyzed Nitrite Reduction

机译:线粒体A胺肟还原组分催化亚硝酸盐还原中的羟基和羟基自由基转移

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摘要

A combination of electron paramagnetic resonance (EPR) spectroscopy and computational approaches has provided insight into the nature of the reaction coordinate for the one-electron reduction of nitrite by the mitochondrial amidoxime reducing component (mARC) enzyme. The results show that a paramagnetic Mo(Ⅴ) species is generated when reduced enzyme is exposed to nitrite, and an analysis of the resulting EPR hyperfine parameters confirms that mARC is remarkably similar to the low-pH form of sulfite oxidase. Two mechanisms for nitrite reduction have been considered. The first shows a modest reaction barrier of 14 kcal/mol for the formation of -NO from unprotonated nitrite substrate. In marked contrast, protonation of the substrate oxygen proximal to Mo in the Mo(Ⅳ)-O-N-O substrate-bound species results in barrierless conversion to products. A fragment orbital analysis reveals a high degree of Mo-O(H)-N-O covalency that provides a π-orbital pathway for one-electron transfer to the substrate and defines orbital constraints on the Mo-substrate geometry for productive catalysis in mARC and other pyranopterin molybdenum enzymes that catalyze this one-electron transformation.
机译:电子顺磁共振(EPR)光谱学和计算方法的结合提供了对线粒体a胺肟还原组分(mARC)酶对亚硝酸盐单电子还原反应坐标的本质的了解。结果表明,还原的酶暴露于亚硝酸盐时会生成顺磁性Mo(Ⅴ)物种,对所得EPR超细参数的分析证实,mARC与亚硫酸盐氧化酶的低pH形式非常相似。已经考虑了两种亚硝酸盐还原机理。第一个显示出14 kcal / mol的适度反应势垒,用于由未质子化的亚硝酸盐底物形成-NO。形成鲜明对比的是,在Mo(Ⅳ)-O-N-O基质结合的物质中,靠近Mo的基质氧的质子化导致无障碍转化为产物。碎片轨道分析显示出高度的Mo-O(H)-NO共价性,为单电子转移到衬底提供了π-轨道途径,并定义了Mo-衬底几何形状上的轨道约束,以在mARC和其他方法中进行生产催化吡喃蝶呤钼酶催化这种单电子转化。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第16期|5276-5279|共4页
  • 作者单位

    Department of Chemistry and Chemical Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, New Mexico 87131-0001, United States;

    Department of Chemistry and Chemical Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, New Mexico 87131-0001, United States;

    Department of Plant Biology, Braunschweig University of Technology, Humboldtstrasse 1, 38023 Braunschweig, Germany;

    Department of Plant Biology, Braunschweig University of Technology, Humboldtstrasse 1, 38023 Braunschweig, Germany;

    Department of Plant Biology, Braunschweig University of Technology, Humboldtstrasse 1, 38023 Braunschweig, Germany;

    Department of Chemistry and Chemical Biology, The University of New Mexico, MSC03 2060, 1 University of New Mexico, Albuquerque, New Mexico 87131-0001, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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