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高铁红蛋白和μ-硫高铁红蛋白的氧化还原动力学比较。对与细胞色素b5相互作用的影响。

Comparisons of redox kinetics of methemerythrin and mu-sulfidomethemerythrin. Implications for interactions with cytochrome b5.

作者信息

Pearce L L, Utecht R E, Kurtz D M

机构信息

Department of Chemistry, Iowa State University, Ames 50011.

出版信息

Biochemistry. 1987 Dec 29;26(26):8709-17. doi: 10.1021/bi00400a033.

Abstract

We have examined the effects on redox kinetics of changing the reduction potential of the mu-oxo-bridged binuclear iron center in octameric hemerythrin (Hr) from Phascolopsis gouldii. The opportunity to examine such effects is provided by the availability of mu-sulfidomethemerythrin (mu-S2-metHr), whose [Fe(III),Fe(III)]met----[Fe(II),Fe(III)]semi-met reduction potential is approximately 200 mV higher than that of methemerythrin (metHr). We have used, as redox partners to Hr, a set of metal complexes and the heme proteins deoxymyoglobin (Mb) and cytochrome b5. The latter protein from P. gouldii is a presumed physiological redox partner of Hr. Similar kinetics at pH 8 in the presence or absence of the allosteric effector perchlorate suggest reduction of the iron atom closer to the outer surface of each subunit in the Hr octamer during the met----semi-met transformation. For all reducing agents, the experimentally determined ratio of second-order rate constants for reductions of mu-S2-metHr and metHr, k12(mu-S2-met)/k12(met), is close to the value of 40 predicted by the simple Marcus relation for "outer-sphere" electron transfer. For oxidations of (semi-met)RHr and mu-S2-semi-metHr, the predicted value of 40 for k12[(semi-met)R]/k12(mu-S2-semi-met) is closely approximated when Fe(CN)6(3-) is used as oxidant. The ionic strength dependence of the second-order rate constant suggests electrostatic interactions of opposite charges during reduction of metHr by P. gouldii cytochrome b5.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们研究了改变来自古氏管须蟹的八聚体蚯蚓血红蛋白(Hr)中μ-氧桥联双核铁中心还原电位对氧化还原动力学的影响。μ-硫代高铁蚯蚓血红蛋白(μ-S2-metHr)的存在为研究此类影响提供了契机,其[Fe(III),Fe(III)]met----[Fe(II),Fe(III)]semi-met还原电位比高铁蚯蚓血红蛋白(metHr)高约200 mV。我们使用了一组金属配合物以及血红蛋白脱氧肌红蛋白(Mb)和细胞色素b5作为Hr的氧化还原伙伴。来自古氏管须蟹的后者蛋白被认为是Hr的生理氧化还原伙伴。在pH 8时,无论有无变构效应剂高氯酸盐,动力学相似,这表明在met----semi-met转变过程中,Hr八聚体中靠近每个亚基外表面的铁原子被还原。对于所有还原剂,实验测定的μ-S2-metHr和metHr还原的二级速率常数之比k12(μ-S2-met)/k12(met)接近“外层”电子转移的简单马库斯关系预测的40值。对于(半金属)RHr和μ-S2-半金属Hr的氧化,当使用Fe(CN)6(3-)作为氧化剂时,k12[(半金属)R]/k12(μ-S2-半金属)预测值40被紧密逼近。二级速率常数对离子强度的依赖性表明,古氏管须蟹细胞色素b5还原metHr时存在相反电荷的静电相互作用。

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