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Inactivation of Horseradish Peroxidase by Phenoxyl Radical Attack

机译:苯氧基自由基攻击使辣根过氧化物酶失活

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摘要

To test the hypothesis that horseradish peroxidase(HRP)can be inactivated by phenoxyl radicals upon reaction with H_2O_2/phenol,we probed HRP-catalyzed phenol oxidation at various phenol/H_2O_22 concentrations.To this end the total protein,phenolic product,active protein,and iron concentrations in the aqueous phase were determined by protein assay,phenol-~14C isotopic labeling,resonance Raman and atomic absorption spectroscopy,respectively.Additionally,resonance Raman and FTIR measurements were carried out to probe possible structural changes of the enzyme during the reaction.The data obtained provide the first experimental support for the hypothesis that HRP can be inactivated by a phenoxyl radical attack.The heme macrocycle destruction involving deprivation of the heme iron occurs as a result of the reaction.An intermediate type of the active protein was observed by Raman difference spectra at low concentrations which features a stabilization of the quantum mixed state of the heme iron and a significant amount of phenoxylphenol-type oligomers in solution and probably also in the heme pocket.This work provides a basis for evaluating the relative contributions of different HRP inactivation mechanisms and is thus critical for optimizing engineering applications involving HRP reactions.
机译:为了验证辣根过氧化物酶(HRP)在与H_2O_2 /苯酚反应后可被苯氧基自由基灭活的假设,我们探索了在各种苯酚/ H_2O_22浓度下HRP催化的苯酚氧化。分别通过蛋白质测定,苯酚~~ 14C同位素标记,共振拉曼光谱和原子吸收光谱法测定水相中铁的浓度。此外,进行共振拉曼光谱和FTIR测量以探测反应过程中酶的可能结构变化。获得的数据为HRP可以被苯氧基自由基攻击灭活的假说提供了第一个实验依据。反应导致发生了血红素大环破坏,涉及到血红素铁被剥夺,观察到一种中间类型的活性蛋白。低浓度拉曼光谱的特征在于血红素的量子混合态稳定这项工作为评估不同HRP失活机制的相对贡献提供了基础,因此对于优化涉及HRP反应的工程应用至关重要。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2005年第5期|p.1431-1437|共7页
  • 作者单位

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

    Contribution from the Department of Chemistry,Drexel University,3141 Chestnut Street, Philadelphia,Pennsylvania 19104,Department of Chemical Engineering,Department of Civil and Environmental Engineering,University of Michigan,Ann Arbor,Michigan 48109;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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