Simaan A Jalila, Murgida Daniel H, Hildebrandt Peter
Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, Avenida da República Apt. 127, P-2780 Oeiras, Portugal.
Biopolymers. 2002;67(4-5):331-4. doi: 10.1002/bip.10101.
Cytochrome c3 from Desulfovibrio gigas is electrostatically adsorbed on Ag electrodes coated with self-assembled monolayers (SAMs) of 11-mercaptoundecanoic acid. The redox equilibria and electron transfer dynamics of the adsorbed four-heme protein are studied by surface enhanced resonance Raman spectroscopy. Immobilization on the coated electrodes does not cause any structural changes in the redox sites. The potential-dependent stationary experiments distinguish the redox potential of heme IV (-0.19 V versus normal hydrogen electrode) from those of the other hemes for which an average value of -0.3 V is determined. Taking into account the interfacial potential drops, these values are in good agreement with the redox potentials of the protein in solution. The heterogenous electron transfer between the electrode and heme IV of the adsorbed cytochrome c3 is analyzed on the basis of time-resolved experiments, leading to a formal electron transfer rate constant of 15 s(-1), which is a factor of 3 smaller than that of the monoheme protein cytochrome c.
来自巨大脱硫弧菌的细胞色素c3通过静电吸附在涂有11-巯基十一烷酸自组装单分子层(SAMs)的银电极上。利用表面增强共振拉曼光谱研究了吸附的四血红素蛋白的氧化还原平衡和电子转移动力学。固定在涂覆电极上不会导致氧化还原位点发生任何结构变化。电位依赖的稳态实验区分出血红素IV的氧化还原电位(相对于标准氢电极,为-0.19 V)与其他血红素的氧化还原电位,后者的平均值为-0.3 V。考虑到界面电位降,这些值与溶液中蛋白质的氧化还原电位非常吻合。基于时间分辨实验分析了电极与吸附的细胞色素c3的血红素IV之间的异质电子转移,得出形式电子转移速率常数为15 s⁻¹,这比单血红素蛋白细胞色素c的速率常数小3倍。