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球形红杆菌细胞色素c氧化酶中Mn2+结合位点的连续波和脉冲电子顺磁共振表征

A continuous wave and pulsed EPR characterization of the Mn2+ binding site in Rhodobacter sphaeroides cytochrome c oxidase.

作者信息

Espe M P, Hosler J P, Ferguson-Miller S, Babcock G T, McCracken J

机构信息

Department of Chemistry, Michigan State University, East Lansing 48824, USA.

出版信息

Biochemistry. 1995 Jun 13;34(23):7593-602. doi: 10.1021/bi00023a005.

Abstract

The ligation environment of the tightly bound Mn2+ in cytochrome c oxidase from Rhodobacter sphaeroides has been characterized by electron paramagnetic resonance (EPR) and electron spin echo envelope modulation (ESEEM). The EPR data show that the Mn2+ is six-coordinate and located in a highly symmetric binding site. Analyses of X- and Q-band EPR spectra show that the zero field splitting parameter D is 115 +/- 25 G (0.0107 +/- 0.0023 cm-1) in the fully oxidized enzyme and 125 +/- 15 G (0.0117 +/- 0.0014 cm-1) in the fully reduced enzyme. For both redox forms of the enzyme the value of E is < or = 25 G (0.0023 cm-1). By comparison with crystal structures of Mn2+ binding proteins, the structural changes at the Mn2+ binding site upon redox state change of the enzyme are estimated to be < or = 0.2 A in ligand bond lengths and < or = 10 degrees in bond angle. This analysis indicates that little modification occurs at the Mn2+ site upon redox change at the other metal centers. Considering the proximity of the Mn2+ site to heme a and heme a3-CuB [Hosler, J. P., Espe, M. P., Zhen, Y., Babcock, G. T., & Ferguson-Miller, S. (1995) Biochemistry 34, 7586-7592], we interpret these results to imply also that there is no large protein conformational change near the heme a and heme a3-CuB sites upon a change in their redox states. Multifrequency 3-pulse ESEEM results provide direct evidence for a nitrogen ligand to the Mn2+, which is assigned to a histidine by comparison with ESEEM studies of Mn(2+)-bound lectins [McCracken, J., Peisach, J., Bhattacharyya, L., & Brewer, F. (1991) Biochemistry 30, 4486-4491] and specifically to His-411 in subunit 1 on the basis of mutagenesis studies (Hosler et al., 1995). From these results a partial model of the Mn2+ binding site has been constructed.

摘要

利用电子顺磁共振(EPR)和电子自旋回波包络调制(ESEEM)对球形红杆菌细胞色素c氧化酶中紧密结合的Mn2+的配位环境进行了表征。EPR数据表明,Mn2+为六配位,位于高度对称的结合位点。对X波段和Q波段EPR光谱的分析表明,在完全氧化的酶中,零场分裂参数D为115±25 G(0.0107±0.0023 cm-1),在完全还原的酶中为125±15 G(0.0117±0.0014 cm-1)。对于该酶的两种氧化还原形式,E值均≤25 G(0.0023 cm-1)。通过与Mn2+结合蛋白的晶体结构进行比较,估计在酶的氧化还原状态改变时,Mn2+结合位点的结构变化在配体键长方面≤0.2 Å,在键角方面≤10°。该分析表明,在其他金属中心发生氧化还原变化时,Mn2+位点几乎没有修饰。考虑到Mn2+位点与血红素a和血红素a3-CuB的接近程度[霍斯勒,J.P.,埃斯佩,M.P.,甄,Y.,巴布科克,G.T.,&弗格森-米勒,S.(1995年)生物化学34,7586 - 759],我们将这些结果解释为也意味着在血红素a和血红素a3-CuB位点的氧化还原状态改变时,其附近没有大的蛋白质构象变化。多频三脉冲ESEEM结果为Mn2+的氮配体提供了直接证据,通过与Mn(2+)结合凝集素的ESEEM研究[麦克拉肯,J.,佩萨克,J.,巴塔查里亚,L.,&布鲁尔,F.(1991年)生物化学30,4486 - 4491]进行比较,并基于诱变研究(霍斯勒等人,1995年),将其归为亚基1中的组氨酸-411。根据这些结果构建了Mn2+结合位点的部分模型。

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