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细胞色素c氧化酶中细胞色素a与铜A之间的电子转移:一项扰动平衡研究。

Electron transfer between cytochrome a and copper A in cytochrome c oxidase: a perturbed equilibrium study.

作者信息

Morgan J E, Li P M, Jang D J, el-Sayed M A, Chan S I

机构信息

Arthur Amos Noyes Laboratory of Chemical Physics, California Institute of Technology, Pasadena 91125.

出版信息

Biochemistry. 1989 Aug 22;28(17):6975-83. doi: 10.1021/bi00443a030.

Abstract

Intramolecular electron transfer in partially reduced cytochrome c oxidase has been studied by the perturbed equilibrium method. We have prepared a three-electron-reduced, CO-inhibited form of the enzyme in which cytochrome a and copper A are partially reduced and in an intramolecular redox equilibrium. When these samples were irradiated with a nitrogen laser (0.6-ns, 1.0-mJ pulses) to photodissociate the bound CO, changes in absorbance at 598 and 830 nm were observed which were consistent with a fast electron transfer from cytochrome a to copper A. The absorbance changes at 598 nm gave an apparent rate of 17,000 +/- 2000 s-1 (1 sigma), at pH 7.0 and 25.5 degrees C. These changes were not observed in either the CO mixed-valence or the CO-inhibited fully reduced forms of the enzyme. The rate was fastest at about pH 8.0, falling off toward both lower and higher pHs. There was a small but clear temperature dependence. The process was also observed in the cytochrome c-cytochrome c oxidase high-affinity complex. The electron equilibration measured between cytochrome a and copper A is far faster than any rate measured or inferred previously for this process.

摘要

采用微扰平衡法研究了部分还原的细胞色素c氧化酶中的分子内电子转移。我们制备了该酶的三电子还原、CO抑制形式,其中细胞色素a和铜A部分还原并处于分子内氧化还原平衡状态。当用氮激光(0.6纳秒,1.0毫焦脉冲)照射这些样品以使结合的CO光解时,在598和830纳米处观察到吸光度变化,这与电子从细胞色素a快速转移到铜A一致。在pH 7.0和25.5℃下,598纳米处的吸光度变化给出的表观速率为17000±2000 s-1(1σ)。在该酶的CO混合价态或CO抑制的完全还原形式中均未观察到这些变化。该速率在约pH 8.0时最快,在较低和较高pH值时均下降。存在较小但明显的温度依赖性。在细胞色素c-细胞色素c氧化酶高亲和力复合物中也观察到了该过程。在细胞色素a和铜A之间测得的电子平衡比此前测量或推断的该过程的任何速率都要快得多。

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