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pH值和温度对完全还原型及混合价态细胞色素c氧化酶与双氧反应的影响。

The effect of pH and temperature on the reaction of fully reduced and mixed-valence cytochrome c oxidase with dioxygen.

作者信息

Oliveberg M, Brzezinski P, Malmström B G

机构信息

Department of Biochemistry and Biophysics, University of Gøoteborg, Sweden.

出版信息

Biochim Biophys Acta. 1989 Dec 7;977(3):322-8. doi: 10.1016/s0005-2728(89)80087-8.

Abstract

The reaction of fully reduced and mixed-valence cytochrome oxidase with O2 has been followed in flow-flash experiments, starting from the CO complexes, at 428, 445, 605 and 830 nm between pH 5.8b and 9.0 in the temperature range of 2-40 degrees C. With the fully reduced enzyme, four kinetic phase with rate constants at pH 7.4 and 25 degrees C of 9 x 10(4), 2.5 x 10(4), 1.0 x 10(4) and 800 s(-1), respectively, are observed. The rates of the three last phases display a very small temperature dependence, corresponding to activation energies in the range 13-54 kJ x mol(-1). The rates of the third and fourth phases decrease at high pH due to the deprotonation of groups with pKa values of 8.3 and 8.8, respectively, but also the second phase appears to have a small pH dependence. In the reaction of the mixed-valence enzyme, three kinetic phases with rate constants at pH 7.4 and 25 degrees C of 9 x 10(4), 6000 and 150 s(-1), respectively, are observed. The third phase only has a small temperature dependence, corresponding to an activation energy of 20 kJ x mol(-1). No pH dependence could be detected for any phase. Reaction schemes consistent with the experimental observations are presented. The pH dependencies of the rates of the two final phase in the reaction of the fully reduced enzyme are proposed to be related to the involvement of protons in the reduction of a peroxide intermediate. The temperature dependence data suggest that the reorganization energies and driving forces are closely matched in all electron transfer steps with both enzyme forms. It is suggested that the slowest step in the reaction of the mixed-valence enzyme is a conformation change involved in the reaction cycle of cytochrome oxidase as a proton pump.

摘要

在流动闪光实验中,从一氧化碳复合物开始,于2至40摄氏度的温度范围内、pH值在5.8b至9.0之间,在428、445、605和830纳米波长处跟踪了完全还原和混合价态的细胞色素氧化酶与氧气的反应。对于完全还原的酶,观察到四个动力学阶段,在pH值7.4和25摄氏度下的速率常数分别为9×10⁴、2.5×10⁴、1.0×10⁴和800 s⁻¹。最后三个阶段的速率对温度的依赖性非常小,对应的活化能在13 - 54 kJ·mol⁻¹范围内。第三和第四阶段的速率在高pH值下降低,这分别是由于pKa值为8.3和8.8的基团去质子化,但第二阶段似乎也有较小的pH依赖性。在混合价态酶的反应中,观察到三个动力学阶段,在pH值7.4和25摄氏度下的速率常数分别为9×10⁴、6000和150 s⁻¹。第三阶段对温度的依赖性很小,对应的活化能为20 kJ·mol⁻¹。未检测到任何阶段有pH依赖性。给出了与实验观察结果一致的反应方案。完全还原酶反应中最后两个阶段速率的pH依赖性被认为与质子参与过氧化物中间体的还原有关。温度依赖性数据表明,在两种酶形式的所有电子转移步骤中,重组能和驱动力紧密匹配。有人认为,混合价态酶反应中最慢的步骤是细胞色素氧化酶作为质子泵的反应循环中涉及的构象变化。

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