首页> 外文期刊>Journal of the American Chemical Society >Probing the Oxyferrous and Catalytically Active Ferryl States of Amphitrite ornata Dehaloperoxidase by Cryoreduction and EPR/ENDOR Spectroscopy. Detection of Compound I
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Probing the Oxyferrous and Catalytically Active Ferryl States of Amphitrite ornata Dehaloperoxidase by Cryoreduction and EPR/ENDOR Spectroscopy. Detection of Compound I

机译:用低温还原法和EPR / ENDOR光谱法探测赤霞珠脱氧过氧化物酶的氧化性和催化活性轮渡状态。化合物I的检测

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摘要

Dehaloperoxidase (DHP) from Amphitrite ornata is a heme protein that can function both as a hemoglobin and as a peroxidase. This report describes the use of 77 K cryoreduction EPR/ENDOR techniques to study both functions of DHP. Cryoreduced oxyferrous [Fe(ll)-O_2] DHP exhibits two EPR signals characteristic of a peroxoferric [Fe(Ⅲ)-O22~] heme species, reflecting the presence of conformational substates in the oxyferrous precursor. 1H ENDOR spectroscopy of the cryogenerated substates shows that H-bonding interactions between His N~εH and heme-bound O_2 in these conformers are similar to those in the β-chain of oxyferrous hemoglobin A (HbA) and oxyferrous myoglobin, respectively. Decay of cryogenerated peroxoferric heme DHP intermediates upon annealing at temperatures above 180 K is accompanied by the appearance of a new paramagnetic species with an axial EPR signal with g± = 3.75 and g_‖ = 1.96, characteristic of an g_⊥ = 3/2 spin state. This species is assigned to Compound I (Cpd I), in which a porphyrin π-cation radical is ferromagnetically coupled with an S = 1 ferryl [Fe(IV)=O] ion. This species was also trapped by rapid freeze-quench of the ambient-temperature reaction mixture of ferric [Fe(lll)] DHP and H_2O_2. However, in the latter case Cpd I is reduced very rapidly by a nearby tyrosine to form Cpd ES [(Fe(IV)=O)(porphyrin)/Tyr~*]. Addition of the substrate analogue 2,4,6-trifluorophenol (F_3PhOH) suppresses formation of the Cpd I intermediate during annealing of cryoreduced oxyferrous DHP at 190 K but has no effect on the spectroscopic properties of the remaining cryoreduced oxyferrous DHP intermediates and kinetics of their decay. These observations indicate that substrate (i) binds to oxyferrous DHP outside of the distal pocket and (ii) can reduce Cpd I to Cpd II [Fe(IV)=O]. These assumptions are also supported by the observation that F3PhOH has only a small effect on the EPR properties of radiolytically cryooxidized and cryoreduced ferrous [Fe(Ⅱ)] DHP. EPR spectra of cryoreduced ferrous DHP disclose the multiconformational nature of the ferrous DHP precursor. The observation and characterization of Cpds I, II, and ES in the absence and in the presence of F_3PhOH provides definitive evidence of a mechanism involving consecutive one-electron steps and clarifies the role of all intermediates formed during turnover.
机译:来自圆角闪石的脱卤过氧化物酶(DHP)是一种血红素蛋白,可以同时充当血红蛋白和过氧化物酶。本报告介绍了使用77 K低温还原EPR / ENDOR技术研究DHP的两种功能。低温还原的氧化亚铁[Fe(II)-O_2] DHP表现出过氧化铁[Fe(Ⅲ)-O22〜]血红素种类的两个EPR信号,反映了氧化亚铁前体中存在构象亚态。冷冻生成的亚状态的1H ENDOR光谱显示,在这些构象异构体中,His N〜εH与血红素结合的O_2之间的H键相互作用分别类似于氧化亚铁血红蛋白A(HbA)和氧化亚铁肌红蛋白的β链。在高于180 K的温度下退火时,低温生成的过铁血红素血红素DHP中间体的衰变伴随出现新的顺磁性物质,其轴向EPR信号的g±= 3.75和g_''= 1.96,g_⊥= 3/2自旋州。该物质属于化合物I(Cpd I),其中卟啉π-阳离子自由基与S = 1的Ferryl [Fe(IV)= O]离子铁磁耦合。 [Fe(III)] DHP和H_2O_2的环境温度反应混合物的快速冷冻猝灭也捕获了该物质。然而,在后一种情况下,Cpd I被附近的酪氨酸迅速还原形成Cpd ES [(Fe(IV)= O)(卟啉)/ Tyr〜*]。底物类似物2,4,6-三氟苯酚(F_3PhOH)的添加抑制了190 K低温还原的氧化亚铁DHP退火过程中Cpd I中间体的形成,但对其余低温还原的氧化亚铁DHP中间体的光谱性质及其动力学没有影响衰变。这些观察结果表明,底物(i)与远端囊袋外部的氧化亚铁DHP结合,并且(ii)可以将Cpd I还原为Cpd II [Fe(IV)= O]。这些假设也得到以下观察结果的支持,即F3PhOH对热解低温氧化和低温还原的亚铁[Fe(Ⅱ)] DHP的EPR特性影响很小。低温还原的亚铁DHP的EPR光谱揭示了亚铁DHP前体的多构象性质。在不存在F_3PhOH的情况下对Cpds I,II和ES的观察和表征,为涉及连续单电子步骤的机理提供了确凿的证据,并阐明了在转换过程中形成的所有中间体的作用。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第42期|p.14995-15004|共10页
  • 作者单位

    Department of Chemistry, Northwestern University, Evanston, Illinois 60208 These authors contributed equally;

    rnDepartment of Chemistry and Biochemistry and School of Medicine, University of South Carolina, Columbia, South Carolina 29208 QB3 Institute, University of California, Berkeley, CA 94720;

    rnDepartment of Chemistry, Northwestern University, Evanston, Illinois 60208;

    rnDepartment of Chemistry and Biochemistry and School of Medicine, University of South Carolina, Columbia, South Carolina 29208;

    rnDepartment of Chemistry and Biochemistry and School of Medicine, University of South Carolina, Columbia, South Carolina 29208 School of Medicine, University of South Carolina, Columbia, South Carolina 29208;

    rnDepartment of Chemistry, Northwestern University, Evanston, Illinois 60208;

  • 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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