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细胞色素c氧化酶的热处理会扰乱铜A位点并影响质子泵浦行为。

Heat treatment of cytochrome c oxidase perturbs the CuA site and affects proton pumping behavior.

作者信息

Li P M, Morgan J E, Nilsson T, Ma M, Chan S I

机构信息

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

出版信息

Biochemistry. 1988 Sep 20;27(19):7538-46. doi: 10.1021/bi00419a054.

Abstract

It has been previously reported that mild heat treatment (43 degrees C for ca. 60 min) abolishes the proton pumping activity of cytochrome c oxidase while leaving the oxidase activity and cytochromes a and a3 unperturbed [Sone, N., & Nicholls, P. (1984) Biochemistry 23, 6550-6554]. We herein describe the effects of this heat treatment on the electron paramagnetic resonance (EPR) and optical absorption signatures of the redox-active metal centers in the enzyme. We find that heat treatment of the oxidized enzyme causes a local structural perturbation at the CuA site. After heat treatment, the enzyme sample contains three subpopulations, each of which has a different structure at CuA. These include (i) native CuA, (ii) a type 2 copper species similar to the one produced by chemical modification by p-(hydroxymercuri)benzoate (pHMB) [Gelles, J., & Chan, S. I. (1985) Biochemistry 24, 3963-3972], and (iii) a novel type 1 copper species. In addition to changes at the CuA site, we find that heat treatment results in accelerated cyanide binding and the removal of subunit III. If the cytochrome c oxidase is heat treated while fully reduced, none of these changes are observed except for subunit III depletion. Furthermore, partial (CO mixed-valence derivative) reduction of the enzyme as well as ligand binding to cytochrome a3 also protects the enzyme against the heat-induced changes, indicating that the oxygen binding site plays a role in stabilizing the CuA site against structural perturbations.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

先前已有报道称,温和热处理(43摄氏度约60分钟)可消除细胞色素c氧化酶的质子泵活性,而氧化酶活性以及细胞色素a和a3不受影响[Sone, N., & Nicholls, P. (1984) Biochemistry 23, 6550 - 6554]。我们在此描述这种热处理对该酶中氧化还原活性金属中心的电子顺磁共振(EPR)和光吸收特征的影响。我们发现,对氧化态酶进行热处理会在CuA位点引起局部结构扰动。热处理后,酶样品包含三个亚群,每个亚群在CuA处具有不同结构。这些包括(i)天然CuA,(ii)一种类似于由对 - (羟基汞)苯甲酸(pHMB)化学修饰产生的2型铜物种[Gelles, J., & Chan, S. I. (1985) Biochemistry 24, 3963 - 3972],以及(iii)一种新型1型铜物种。除了CuA位点的变化外,我们发现热处理导致氰化物结合加速以及亚基III的去除。如果在细胞色素c氧化酶完全还原时进行热处理,则除了亚基III消耗外,不会观察到这些变化。此外,酶的部分(CO混合价衍生物)还原以及配体与细胞色素a3的结合也可保护酶免受热诱导的变化,表明氧结合位点在稳定CuA位点免受结构扰动方面发挥作用。(摘要截短于250字)

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