Department of Chemistry, University of Modena and Reggio Emilia, Via Campi 183, 41125, Modena, Italy.
J Biol Inorg Chem. 2010 Nov;15(8):1233-42. doi: 10.1007/s00775-010-0681-7. Epub 2010 Jun 13.
We have studied the effect of urea-induced unfolding on the electron transfer process of yeast iso-1-cytochrome c and its mutant K72AK73AK79A adsorbed on electrodes coated by mixed 11-mercapto-1-undecanoic acid/11-mercapto-1-undecanol self-assembled monolayers. Electrochemical measurements, complemented by surface enhanced resonance Raman studies, indicate two distinct states of the adsorbed proteins that mainly differ with respect to the ligation pattern of the haem. The native state, in which the haem is axially coordinated by Met80 and His18, displays a reduction potential that slightly shifts to negative values with increasing urea concentration. At urea concentrations higher than 6 M, a second state prevails in which the Met80 ligand is replaced by an additional histidine residue. This structural change in the haem pocket is associated with an approximately 0.4 V shift of the reduction potential to negative values. These two states were found for both the wild-type protein and the mutant in which lysine residues 72, 73 and 79 had been substituted by alanines. The analysis of the reduction potentials, the reaction enthalpies and entropies as well as the rate constants indicates that these three lysine residues have an important effect on stabilising the protein structure in the adsorbed state and facilitating the electron transfer dynamics.
我们研究了尿素诱导的展开对酵母同工型 1-细胞色素 c 及其突变体 K72AK73AK79A 在涂有混合 11-巯基-1-十一烷酸/11-巯基-1-十一醇自组装单层电极上吸附的电子转移过程的影响。电化学测量,辅以表面增强共振拉曼研究,表明吸附蛋白有两种不同的状态,主要区别在于血红素的连接模式。在原生状态下,血红素由 Met80 和 His18 轴向配位,还原电位随着尿素浓度的增加略微向负值移动。在尿素浓度高于 6 M 时,占主导地位的第二个状态出现,其中 Met80 配体被另一个组氨酸残基取代。血红素口袋中的这种结构变化与还原电位向负值约 0.4 V 的移动相关。这两种状态都存在于野生型蛋白和突变体中,突变体中赖氨酸残基 72、73 和 79 被丙氨酸取代。对还原电位、反应焓和熵以及速率常数的分析表明,这三个赖氨酸残基对稳定吸附状态下的蛋白质结构和促进电子转移动力学有重要影响。