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Tyrosyl radicals in dehaloperoxidase: How nature deals with evolving an oxygen-binding globin to a biologically relevant peroxidase

机译:脱卤过氧化物酶中的酪氨酰基自由基:自然界如何与结合氧的球蛋白进化为生物学相关的过氧化物酶

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摘要

Dehaloperoxidase (DHP) from Amphitrite ornata, having been shown to catalyze the hydrogen peroxide-dependent oxidation of trihalophenols to dihaloquinones, is the first oxygen binding globin that possesses a biologically relevant peroxidase activity. The catalytically competent species in DHP appears to be Compound ES, a reactive intermediate that contains both a ferryl heme and a tyrosyl radical. By simulating the EPR spectra of DHP activated by H 2 O 2 , Thompson et al. (Thompson, M. K., Franzen, S., Ghiladi, R. A., Reeder, B. J., and Svistunenko, D. A. (2010) J. Am. Chem. Soc. 132, 17501-17510) proposed that two different radicals, depending on the pH, are formed, one located on either Tyr-34 or Tyr-28 and the other on Tyr-38. To provide additional support for these simulation-based assignments and to deduce the role(s) that tyrosyl radicals play in DHP, stoppedflow UV-visible and rapid-freeze-quench EPR spectroscopic methods were employed to study radical formation in DHP when three tyrosine residues, Tyr-28, Tyr-34, and Tyr-38, were replaced either individually or in combination with phenylalanines. The results indicate that radicals form on all three tyrosines in DHP. Evidence for the formation of DHP Compound I in several tyrosine mutants was obtained. Variants that formed Compound I showed an increase in the catalytic rate for substrate oxidation but also an increase in heme bleaching, suggesting that the tyrosines are necessary for protecting the enzyme from oxidizing itself. This protective role of tyrosines is likely an evolutionary adaptation allowing DHP to avoid selfinflicted damage in the oxidative environment. © 2013 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:已显示,来自环纹圆石的脱卤过氧化物酶(DHP)能够催化过氧化氢依赖性的三卤酚氧化为二卤代醌,是具有生物学相关过氧化物酶活性的第一个氧结合球蛋白。 DHP中具有催化活性的物质似乎是化合物ES,它是一种同时含有亚铁血红素和酪氨酰基的反应性中间体。通过模拟被H 2 O 2活化的DHP的EPR光谱,Thompson等人(美国)。 (Thompson,MK,Franzen,S.,Ghiladi,RA,Reeder,BJ和Svistunenko,DA(2010)J.Am.Chem.Soc.132,17501-17510)提出了两个不同的基团,具体取决于pH值,形成,一个位于Tyr-34或Tyr-28上,另一个位于Tyr-38上。为了为这些基于模拟的任务提供更多支持并推论酪氨酰自由基在DHP中的作用,当三个酪氨酸残基残留时,采用停流UV可见和快速冷冻猝灭EPR光谱方法研究DHP中自由基的形成。 Tyr-28,Tyr-34和Tyr-38可以单独或与苯丙氨酸组合使用。结果表明自由基在DHP中的所有三个酪氨酸上形成。获得了在多个酪氨酸突变体中形成DHP化合物I的证据。形成化合物I的变体显示出底物氧化的催化速率增加,但血红素漂白也增加,表明酪氨酸是保护酶免于自身氧化所必需的。酪氨酸的这种保护作用很可能是进化适应性,使DHP可以避免在氧化环境中遭受自我伤害。 ©2013,美国生物化学与分子生物学学会。

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