An electrochemical approach to investigate gated electron transfer using a physiological model system:: Cytochrome c immobilized on carboxylic acid-terminated alkanethiol self-assembled monolayers on gold electrodes

被引:229
作者
Avila, A
Gregory, BW
Niki, K [1 ]
Cotton, TM
机构
[1] Illinois State Univ, Dept Chem, Normal, IL 61790 USA
[2] Iowa State Univ, Dept Chem, Ames, IA 50011 USA
来源
JOURNAL OF PHYSICAL CHEMISTRY B | 2000年 / 104卷 / 12期
关键词
D O I
10.1021/jp992591p
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The electron transfer (ET) scheme of cytochrome c (cyt. c) coupled to carboxylic acid-terminated alkanethiol self-assembled monolayers (SAMs) on well-defined gold (111) electrodes is a simplified model system to investigate both long range and intermolecular ET processes. The advantages of an electrochemical approach to investigate the ET mechanism are that one can both regulate the ET path length by using alkanethiol SAMs of varying chain lengths and deconvolute the intermolecular ET event at the interface from the intramolecular ET event. It has been shown that the interactions between cyt, c and the carboxylate termini are electrostatic in nature, analogous to those between cyt. c and negatively charged proteins such as cytochrome c peroxidase. In the present work, the effects of alkanethiol chain length, ionic strength, pH, and viscosity of supporting electrolyte on the ET kinetics were studied. The ET rates through long alkanethiol chains were observed to be slow because electron tunneling through the alkyl chain was the rate-limiting step in the process. On the other hand, the ET rate through shorter chain alkanethiols appeared to be independent of chain length, and the effect of ionic strength and pH on the observed ET rates was insignificant. It is proposed that the rate-limiting ET step through short alkyl chains results from a configurational rearrangement process preceding the ET event, and that its rate is 2.6 x 10(3) s(-1). This "gating" process arises from a rearrangement of the cyt. c from a stable binding form (binding complex) on the carboxylic acid terminus to a configuration (ET complex) which facilitates the most efficient ET pathway. The rate of the configurational rearrangement reaction that precedes the ET reaction was found to be markedly influenced by solution viscosity, but its equilibrium constant was independent of solution viscosity. The change in the configurational rearrangement reaction rate with solution viscosity follows a modified Kramers equation.
引用
收藏
页码:2759 / 2766
页数:8
相关论文
共 83 条
  • [51] PIIETH W, 1992, ADSORPTION MOL METAL, P239
  • [52] PLIETH W, 1990, SPECTROSCOPIC DIFFRA, P223
  • [53] QIN L, 1994, BIOCHEMISTRY-US, V33, P7543
  • [54] Electron transfer between surface-confined cytochrome c and an N-acetylcysteine-modified gold electrode
    Ruzgas, T
    Wong, L
    Gaigalas, AK
    Vilker, VL
    [J]. LANGMUIR, 1998, 14 (25) : 7298 - 7305
  • [55] ELECTROREFLECTANCE STUDY OF HEMIN ADSORBED ON A PYROLYTIC-GRAPHITE ELECTRODE SURFACE AND ITS COADSORPTION WITH METHYLENE-BLUE
    SAGARA, T
    TAKAGI, S
    NIKI, K
    [J]. JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1993, 349 (1-2): : 159 - 171
  • [56] SURFACE PROCESSES AND ADSORPTION STATES OF METHYLENE-BLUE AT GRAPHITE ELECTRODE SURFACES IN AN ACIDIC MEDIUM - AN ELECTROREFLECTANCE STUDY
    SAGARA, T
    NIKI, K
    [J]. LANGMUIR, 1993, 9 (03) : 831 - 838
  • [57] SEPARATION OF SUPERIMPOSED ELECTROREFLECTANCE SIGNALS BY A PHASE-SHIFT TECHNIQUE - SEPARATION OF ER SIGNAL OF CYTOCHROME C3 ADSORBED ON THE ELECTRODE SURFACE FROM THAT OF METHYLVIOLOGEN IN A SOLUTION-PHASE
    SAGARA, T
    WANG, HX
    NIKI, K
    [J]. JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1994, 364 (1-2): : 285 - 288
  • [58] SPECTROELECTROCHEMICAL STUDY OF THE REDOX REACTION-MECHANISM OF CYTOCHROME-C AT A GOLD ELECTRODE IN A NEUTRAL SOLUTION IN THE PRESENCE OF 4,4'-BIPYRIDYL AS A SURFACE MODIFIER
    SAGARA, T
    MURAKAMI, H
    IGARASHI, S
    SATO, H
    NIKI, K
    [J]. LANGMUIR, 1991, 7 (12) : 3190 - 3196
  • [59] ELECTROREFLECTANCE STUDY OF THE REDOX REACTION OF METHYLENE-BLUE ADSORBED ON A PYROLYTIC-GRAPHITE ELECTRODE
    SAGARA, T
    IIZUKA, J
    NIKI, K
    [J]. LANGMUIR, 1992, 8 (03) : 1018 - 1025
  • [60] Sagara T, 1998, RRD PHYS CHEM, V2, P159