Vygodina T V, Konstantinov A A
A.N. Belozersky Laboratory of Molecular Biology and Bioorganic Chemistry, Moscow State University, U.S.S.R.
Ann N Y Acad Sci. 1988;550:124-38. doi: 10.1111/j.1749-6632.1988.tb35329.x.
Addition of high H2O2 concentrations to a peroxy complex of proteoliposome-bound cytochrome oxidase converts the complex to a spectrally distinct species. The difference spectrum of the high-peroxide compound versus the oxidized enzyme is characterized in a visible range by a broad symmetrical band at 580 nm (delta epsilon approximately equal to 4 mM-1 cm-1) with a minor second maximum at approximately 535 nm; a complete disappearance of the 605-607-nm peak occurs which is typical of the peroxy complex. In the Soret band, the spectrum of the high H2O2 compound is virtually indistinguishable from that of the initial peroxide adduct. The high-peroxide compound appears to be identical with an oxoferryl intermediate formed in the forward and reversed cytochrome oxidase reaction. The transition of the peroxy complex to the oxoferryl state is favored by alkaline pH and counteracted by ferricyanide. The peroxy and oxoferryl complexes of cytochrome c oxidase can also be formed with t-butylhydroperoxide.
向与蛋白脂质体结合的细胞色素氧化酶的过氧复合物中添加高浓度的过氧化氢,会使该复合物转变为光谱特性不同的物种。高过氧化物化合物与氧化酶的差光谱在可见光范围内的特征是,在580 nm处有一个宽的对称带(Δε约等于4 mM⁻¹ cm⁻¹),在约535 nm处有一个较小的第二最大值;605 - 607 nm峰完全消失,这是过氧复合物的典型特征。在索雷特带中,高过氧化氢化合物的光谱与初始过氧化物加合物的光谱几乎无法区分。高过氧化物化合物似乎与在正向和反向细胞色素氧化酶反应中形成的氧铁中间体相同。过氧复合物向氧铁状态的转变在碱性pH下更有利,而铁氰化物会起到抑制作用。细胞色素c氧化酶 的过氧和氧铁复合物也可以由叔丁基过氧化氢形成。