首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Redox reactivity of the heme Fe3+/Fe2+ couple in native myoglobins and mutants with peroxidase-like activity
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Redox reactivity of the heme Fe3+/Fe2+ couple in native myoglobins and mutants with peroxidase-like activity

机译:血红素Fe3 + / Fe2 +对在天然肌球蛋白和具有过氧化物酶样活性的突变体中的氧化还原反应性

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摘要

The reaction enthalpy and entropy for the one-electron reduction of the ferric heme in horse heart and sperm whale aquometmyoglobins (Mb) have been determined exploiting a spectroelectrochemical approach. Also investigated were the T67R, T67K, T67R/S92D and T67R/S92D Mb-H variants (the latter containing a protoheme-L-histidine methyl ester) of sperm whale Mb, which feature peroxidase-like activity. The reduction potential (E degrees') in all species consists of an enthalpic term which disfavors Fe3+ reduction and a larger entropic contribution which instead selectively stabilizes the reduced form. This behavior differs from that of the heme redox enzymes and electron transport proteins investigated so far. The reduction thermodynamics in the series of sperm whale Mb variants show an almost perfect enthalpy-entropy compensation, indicating that the mutation-induced changes in Delta H-rc(degrees') and Delta S-rc(degrees') are dominated by reduction-induced solvent reorganization effects. The modest changes in E degrees' originate from the enthalpic effects of the electrostatic interactions of the heme with the engineered charged residues. The small influence that the mutations exert on the reduction potential of myoglobin suggests that the increased peroxidase activity of the variants is not related to changes in the redox reactivity of the heme iron, but are likely related to a more favored substrate orientation within the distal heme cavity.
机译:利用光谱电化学方法已经确定了马心脏和抹香鲸aquametmyoglobins(Mb)中铁血红素单电子还原的反应焓和熵。还研究了抹香鲸Mb的T67R,T67K,T67R / S92D和T67R / S92D Mb-H变体(后者含有原血红素-L-组氨酸甲酯),具有类似过氧化物酶的活性。所有物种中的还原电位(E度)均由不利于Fe3 +还原的焓项和较大的熵贡献组成,而熵的贡献则选择性地稳定了还原形式。这种行为不同于迄今为止研究的血红素氧化还原酶和电子传输蛋白。抹香鲸Mb变体系列中的还原热力学显示出几乎完美的焓-熵补偿,表明由突变引起的Delta H-rc(度)和Delta S-rc(度)的变化主要由还原-诱导溶剂的重组作用。 E度的适度变化源于血红素与工程带电残基的静电相互作用的焓效应。突变对肌红蛋白还原电位的微小影响表明,变体增加的过氧化物酶活性与血红素铁的氧化还原反应性的变化无关,但可能与远端血红素内更有利的底物方向有关腔。

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