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细胞色素氧化酶内的金属位点协同作用。

Metal site cooperativity within cytochrome oxidase.

作者信息

Goodman G

出版信息

J Biol Chem. 1984 Dec 25;259(24):15094-9.

PMID:6096358
Abstract

Low temperature (9-15 K) EPR of isolated bovine heart cytochrome oxidase titrated potentiometrically in the presence of azide reveals the formation of two distinct species of low-spin cytochrome a3(III)-azide which differ in redox properties and g values. Both species are formed with characteristic midpoint potentials during the course of oxidative titration and disappear at higher potentials. The signal appearing at lower potential has principal g values 2.88, 2.19, and 1.64; that appearing at higher potential has g values 2.77, 2.18, and 1.74. A good fit to the experimental data (per cent of cytochrome present in a given paramagnetic state versus oxidation potential) was obtained with a model whereby the gz = 2.88 species arises from cytochrome a3(III)-azide with cytochrome a reduced, which is converted to the gz = 2.77 species upon oxidation of cytochrome a. Potentiometric titration of cytochrome oxidase in the presence of cyanide produces two low-spin heme EPR signals attributable to cytochrome a3(III)-cyanide which are incompletely resolved, but are distinguishable nonetheless. The low-potential signal has peak amplitude at gz = 3.63 and a long high-field tail; this resonance has been seen by other workers in the partially reduced enzyme (DerVartanian, D. V., Lee, I. Y., Slater, E. C., and van Gelder, B. F. (1974) Biochim. Biophys. Acta 347, 321-327). The high-potential signal is much more symmetric about its peak amplitude, which is at approximately 10 G higher field with gz = 3.61. As with the azide complex, the titration behavior in the presence of 2 mM KCN is adequately simulated by assuming that the appearance of the two species is a function of the oxidation state of cytochrome a. Like the a3-azide signals, the a3-cyanide signals disappear upon further oxidation with some characteristic midpoint potential. If the disappearance of the a3-ligand signals with increasing potential is assumed to be the result of antiferromagnetic (or ferromagnetic) coupling of a3(III) (S = 1/2) to CuB(II) (S = 1/2), then cooperativity between cytochrome a and CuB is implied. The data are consistent with the hypothesis that oxidation of cytochrome a raises the midpoint potential of CuB by 55 +/- 10 mV.

摘要

在叠氮化物存在下对分离的牛心细胞色素氧化酶进行电位滴定,其低温(9 - 15K)电子顺磁共振(EPR)显示形成了两种不同的低自旋细胞色素a3(III)-叠氮化物物种,它们在氧化还原性质和g值上有所不同。在氧化滴定过程中,这两种物种均以特征性的中点电位形成,并在更高电位下消失。出现在较低电位的信号其主要g值为2.88、2.19和1.64;出现在较高电位的信号其g值为2.77、2.18和1.74。通过一个模型能很好地拟合实验数据(给定顺磁状态下细胞色素所占百分比与氧化电位的关系),该模型认为gz = 2.88的物种源自细胞色素a3(III)-叠氮化物且细胞色素a处于还原状态,当细胞色素a氧化时它会转变为gz = 2.77的物种。在氰化物存在下对细胞色素氧化酶进行电位滴定会产生两个归因于细胞色素a3(III)-氰化物的低自旋血红素EPR信号,它们没有完全分辨开,但仍然是可区分的。低电位信号在gz = 3.63处有峰值幅度且有一个长的高场尾部;其他研究人员在部分还原的酶中也观察到了这种共振(DerVartanian, D. V., Lee, I. Y., Slater, E. C., and van Gelder, B. F. (1974) Biochim. Biophys. Acta 347, 321 - 327)。高电位信号在其峰值幅度周围更加对称,峰值幅度在约高10 G的场强处,gz = 3.

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