Pecht I, Faraggi M
Proc Natl Acad Sci U S A. 1972 Apr;69(4):902-6. doi: 10.1073/pnas.69.4.902.
The reaction of horse-heart cytochrome c with hydrated electrons has been studied by the pulseradiolysis technique. In neutral solution, the ferriheme group was reduced in a bimolecular reaction that takes place at a rate equal to that of the decay of the e(-) (aq), and approaches the diffusion-controlled limit. This reduction is assigned mainly to a direct reaction, proceeding via the exposed edge of the porphyrin projecting into the cytochrome c crevice. The reaction absorption spectrum observed 20 musec after an electron pulse was very similar, yet blue-shifted relative to, the difference spectrum between the reduced and oxidized forms of cytochrome c. However, this shift vanishes in a slow monomolecular reaction, which seems to reflect the conformational relaxation of the protein to the final equilibrium state of its reduced form. In alkaline solutions, the transition of cytochrome c molecules into an irreducible conformation causes a proportionate decrease in the amount of ferricytochrome c reduced in the direct reaction. The rate of conformational transition of the protein into the reactive form is now the limiting step for a substantial part of the reduction that takes place via this slow monomolecular reaction. Pseudomonas cytochrome c 551 which, in contrast to horse-heart cytochrome c, is a negatively charged protein at neutral pH reacts with e(-) (aq) at a rate lower than does the horse-heart protein. The reduction of the heme group follows that of the e(-) (aq) decay with a small, yet significant, delay.
利用脉冲辐解技术研究了马心细胞色素c与水合电子的反应。在中性溶液中,高铁血红素基团在双分子反应中被还原,该反应的发生速率与水合电子(e⁻(aq))的衰减速率相等,且接近扩散控制极限。这种还原主要归因于直接反应,该反应通过卟啉暴露于细胞色素c裂隙中的边缘进行。电子脉冲后20微秒观察到的反应吸收光谱与细胞色素c还原态和氧化态之间的差光谱非常相似,但发生了蓝移。然而,这种蓝移在一个缓慢的单分子反应中消失,这似乎反映了蛋白质构象向其还原态最终平衡状态的弛豫。在碱性溶液中,细胞色素c分子向不可还原构象的转变导致直接反应中被还原的高铁细胞色素c量相应减少。蛋白质向反应性形式的构象转变速率现在是通过这种缓慢单分子反应发生的大部分还原反应的限速步骤。与马心细胞色素c不同,假单胞菌细胞色素c 551在中性pH下是带负电荷的蛋白质,它与e⁻(aq)的反应速率低于马心蛋白质。血红素基团的还原跟随e⁻(aq)的衰减,有一个小但显著的延迟。