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通过红外和紫外/可见光谱电化学方法监测一氧化碳结合型细胞色素c氧化酶中金属位点的氧化还原依赖性相互作用。

Redox dependent interactions of the metal sites in carbon monoxide-bound cytochrome c oxidase monitored by infrared and UV/visible spectroelectrochemical methods.

作者信息

Dodson E D, Zhao X J, Caughey W S, Elliott C M

机构信息

Department of Chemistry, Colorado State University, Fort Collins 80523, USA.

出版信息

Biochemistry. 1996 Jan 16;35(2):444-52. doi: 10.1021/bi951313n.

Abstract

Spectroelectrochemical titration studies involving the binding of the infrared-active probe ligand carbon monoxide (CO) to the heme alpha 3/CuB site of bovine heart cytochrome c oxidase (CcO) have been reexamined. The spectroelectrochemical cell employed was constructed to monitor both the infrared (IR) and visible/Soret spectra of the CcO-CO complex as a function of the overall oxidation state of the enzyme. A number of commonly used electron transfer mediators were employed to shuttle electrons between the redox active sites within the enzyme and the electrode surface. The well-documented shift in the CO infrared stretch band maximum from 1963.3 cm-1 (CcO fully reduced) to 1965.5 cm-1 (CcO partially oxidized) was carefully titrated electrochemically. Deconvolution of the asymmetric CO stretches indicates the existence of two different states of CO vibrators within the enzyme, presumably due to two conformers which are present in a ratio of approximately 5:1. Upon incrementally stepping the potential from the fully reduced state to the partially oxidized state, we found it possible to follow the decrease in the intensity of the original pair of these conformers and the concomitant increase of a resultant pair while maintaining this 5:1 ratio between the conformers. By plotting the change in the deconvoluted CO peak intensities vs the redox potential, as well as the absorbance changes in the visible/Soret spectra vs the redox potential, we found not only that both fit an n = 1 electron process but also that the spectral changes tracked each other identically with experimental error. Furthermore, analysis of the second derivative of the Soret spectra allowed for the qualitative monitoring of the oxidation state of the Fe alpha site which again tracked identically to that of the CO shift in the IR region. These results would seem to confirm earlier suggestions that perturbing the oxidation state of Fe alpha causes a conformational change in the enzyme which affects the binding site for CO, namely heme alpha 3. As a consequence of the CO IR stretching frequencies changing by only 2 cm-1 during this redox titration, with no accompanying changes in half band width, we suggest that it is impossible that this small but significant change seen in the CO stretching frequencies could be due to an oxidation state change in CuB, given the known sensitivity of the CO stretching frequency to perturbations and the close proximity of Cu(B) to the CO binding site at heme alpha 3 (4.5 A). Therefore, it would appear that Cu(B) must remain reduced as long as CO is bound to the heme alpha 3 site. This is consistent with earlier proposals that Fe alpha 3 and Cu(B) are acting together as a two-electron donor to dioxygen.

摘要

涉及红外活性探针配体一氧化碳(CO)与牛心细胞色素c氧化酶(CcO)的血红素α3/CuB位点结合的光谱电化学滴定研究已被重新审视。所使用的光谱电化学池被构建用于监测CcO-CO复合物的红外(IR)光谱以及可见/索雷特光谱随酶的整体氧化态的变化。使用了多种常用的电子转移介质在酶内的氧化还原活性位点与电极表面之间穿梭电子。对记录良好的CO红外伸缩带最大值从1963.3 cm-1(CcO完全还原)到1965.5 cm-1(CcO部分氧化)的变化进行了仔细的电化学滴定。对不对称CO伸缩的去卷积表明酶内存在两种不同状态的CO振动器,推测是由于两种构象体以大约5:1的比例存在。当从完全还原状态逐步将电位升高到部分氧化状态时,我们发现可以跟踪这对原始构象体强度的降低以及随之而来的一对构象体强度的增加,同时保持构象体之间的5:1比例。通过绘制去卷积的CO峰强度变化与氧化还原电位的关系图,以及可见/索雷特光谱中的吸光度变化与氧化还原电位的关系图,我们不仅发现两者都符合n = 1的电子过程,而且光谱变化在实验误差范围内相互完全跟踪。此外,对索雷特光谱的二阶导数分析允许对Feα位点的氧化态进行定性监测,其再次与IR区域中CO位移的情况完全跟踪一致。这些结果似乎证实了早期的推测,即扰动Feα的氧化态会导致酶的构象变化,从而影响CO的结合位点,即血红素α3。由于在这次氧化还原滴定过程中CO的红外伸缩频率仅变化2 cm-1,且半高宽没有伴随变化,考虑到已知CO伸缩频率对扰动的敏感性以及Cu(B)与血红素α3处的CO结合位点的紧密接近程度(4.5 Å),我们认为在CO伸缩频率中看到的这种小但显著的变化不可能是由于CuB的氧化态变化引起的。因此,只要CO与血红素α3位点结合,Cu(B)似乎必须保持还原状态。这与早期的提议一致,即Feα3和Cu(B)共同作为双电子供体作用于双氧。

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