Surface-enhanced resonance Raman spectroscopy and spectroscopy study of redox-induced conformational equilibrium of cytochrome c adsorbed on DNA-modified metal electrode


Autoria(s): Jiang X; Wang YL; Qu XH; Dong SJ
Data(s)

2006

Resumo

The redox-induced conformational equilibrium of cytochrome c (cyt c) adsorbed on DNA-modified metal electrode and the interaction mechanism of DNA with cyt c have been studied by electrochemical, spectroscopic and spectroelectrochemical techniques. The results indicate that the external electric field induces potential-dependent coordination equilibrium of the adsorbed cyt c between its oxidized state (with native six-coordinate low-spin and non-native five-coordinate high-spin heme configuration) and its reduced state (with native six-coordinate low-spin heme configuration) on DNA-modified metal electrode. The strong interactions between DNA and cyt c induce the self-aggregation of cyt c adsorbed on DNA. The orientational distribution of cyt c adsorbed on DNA-modified metal electrode is potential-dependent, which results in the deviation from an ideal Nernstian behavior of the adsorbed cyt c at high electrode potentials. The electric-field-induced increase in the activation barrier of proton-transfer steps attributed to the rearrangement of the hydrogen bond network and the self-aggregation of cyt c upon adsorption on DNA-modified electrode strongly decrease the interfacial electron transfer rate.

Identificador

http://ir.ciac.jl.cn/handle/322003/16075

http://www.irgrid.ac.cn/handle/1471x/151791

Idioma(s)

英语

Fonte

Jiang X;Wang YL;Qu XH;Dong SJ.Surface-enhanced resonance Raman spectroscopy and spectroscopy study of redox-induced conformational equilibrium of cytochrome c adsorbed on DNA-modified metal electrode,BIOSENSORS & BIOELECTRONICS,2006,22(1):49-55

Palavras-Chave #SELF-ASSEMBLED MONOLAYERS #MODIFIED GOLD ELECTRODES #DIRECT ELECTROCHEMISTRY #SILVER ELECTRODES #ORIENTATION #CHEMISTRY #PROTEINS #DYNAMICS #FTIR #FILM
Tipo

期刊论文