首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Redox properties of the Fe3+/Fe2+ couple in Arthromyces ramosus class II peroxidase and its cyanide adduct
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Redox properties of the Fe3+/Fe2+ couple in Arthromyces ramosus class II peroxidase and its cyanide adduct

机译:鼠尾草II类过氧化物酶及其氰化物加合物中Fe3 + / Fe2 +对的氧化还原特性

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摘要

The thermodynamics of the one-electron reduction of the ferric heme in free and cyanide-bound Arthromyces ramosus peroxidase (ARP), a class II plant peroxidase, were determined through spectro-electrochemical experiments. The data were compared with those for class III horseradish peroxidase C (HRP) and its cyanide adduct, and were interpreted in terms of ligand binding features, electrostatic effects and solvent accessible surface area of the heme group and of catalytically relevant residues in the heme distal site. The E-o' values for free and cyanide-bound ARP (-0.183 and -0.390 V, respectively, at 25 degrees C and pH 7) are higher than those for HRP and HRP-CN. ARP features an enthalpic stabilization of the ferrous state and a remarkably negative reduction entropy, which are both unprecedented for heme peroxidases. Once the compensatory contributions of solvent reorganization are partitioned from the measured reduction enthalpy, the resulting protein-based Delta H-rc(int)degrees' value for ARP turns out to be less positive than that for HRP by + 10 kJ mol(-1). The smaller stabilization of the oxidized heme in ARP most probably results from the less pronounced anionic character of the proximal histidine, and the decreased polarity in the heme distal site as compared with HRP, as indicated by the X-ray structures. The surprisingly negative Delta S-rc degrees' value for ARP is the result of peculiar reduction-induced solvent reorganization effects.
机译:通过光谱电化学实验确定了游离的和氰化物结合的青蒿过氧化物酶(ARP)(一种II类植物过氧化物酶)中铁血红素的单电子还原热力学。将数据与III类辣根过氧化物酶C(HRP)及其氰化物加合物的数据进行比较,并根据血红素基团的配体结合特征,静电效应和溶剂可及表面积以及血红素远端的催化相关残基进行解释现场。游离和氰化物结合的ARP的E-o'值(分别在25摄氏度和pH 7下分别为-0.183和-0.390 V)高于HRP和HRP-CN。 ARP具有亚铁状态的焓稳定和显着的负还原熵的特性,这对于血红素过氧化物酶而言都是前所未有的。一旦将溶剂重组的补偿性贡献与所测得的还原焓区分开,则所得的基于ARP的基于蛋白质的Delta H-rc(int)degrees值就不会比针对HRP的正+ + 10 kJ mol(-1) )。如X射线结构所示,与HRP相比,ARP中氧化血红素的稳定性较小,最可能是由于近端组氨酸的阴离子特性较不明显,以及血红素远端部位极性降低。 ARP令人惊讶的负Delta S-rc度值是特殊还原诱导的溶剂重组效应的结果。

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