Complex electrochemistry of flavodoxin at carbon-based electrodes: Results from a combination of direct electron transfer, flavin-mediated electron transfer and comproportionation

被引:34
作者
Heering, HA [1 ]
Hagen, WR [1 ]
机构
[1] AGR UNIV WAGENINGEN,DEPT BIOCHEM,6703 BC WAGENINGEN,NETHERLANDS
来源
JOURNAL OF ELECTROANALYTICAL CHEMISTRY | 1996年 / 404卷 / 02期
关键词
flavodoxin; staircase cyclic voltammetry; differential pulse voltammetry; digital simulation;
D O I
10.1016/0022-0728(95)04248-2
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Staircase cyclic voltammetry (SCV) and differential pulse voltammetry on fully oxidized flavodoxin from Desulfovibrio vulgaris Hildenborough at the bare glassy carbon electrode give one redox couple at a potential of -218 mV (standard hydrogen electrode (SHE)) at pH = 7.0 with an SCV peak current proportional to the scan rate. This response is caused by flavin mononucleotide (FMN), dissociated from the protein and adsorbed onto the electrode. The midpoint potential and the pK of 6.5 are equal to the values measured with free FMN in solution. When the cationic promoter neomycin is added, one additional and diffusion controlled response is observed. The midpoint potential is -413 mV (SHE) at pH 7.0 with a redox-linked pK of 4.8 for the reduced form. The temperature dependence is -1.86 mV K-1, yielding Delta S degrees = -179 J mol(-1) K-1 and Delta H degrees = -12.4 kJ mol(-1). Although the starting material was 100% quinone, no response was observed around the midpoint potential of the quinone to semiquinone reduction of -113 mV (SHE) at pH 7.0, determined in an EPR-monitored titration with dithionite. Digital simulation shows that the peak currents of the second reduction couple approach a maximum value after a few cycles if comproportionation of fully reduced and fully oxidized flavodoxin occurs in solution and a small amount of semiquinone is either present initially or is generated by mediation of electrode-bound FMN. In the latter case the heterogeneous electron transfer rate between adsorbed FMN and flavodoxin is 6.3 X 10(-6) m s(-1). The implications of this anomalous behaviour for electrochemistry on flavin enzymes like glucose oxidase are discussed.
引用
收藏
页码:249 / 260
页数:12
相关论文
共 63 条
[31]   DIFFERENTIAL PULSE VOLTAMMETRIC STUDY OF DIRECT ELECTRON-TRANSFER IN GLUCOSE-OXIDASE CHEMICALLY MODIFIED GRAPHITE-ELECTRODES [J].
IANNIELLO, RM ;
LINDSAY, TJ ;
YACYNYCH, AM .
ANALYTICAL CHEMISTRY, 1982, 54 (07) :1098-1101
[32]  
KREY GD, 1988, J BIOL CHEM, V265, P15436
[33]   FLAVIN DYNAMICS IN REDUCED FLAVODOXINS - A TIME-RESOLVED POLARIZED FLUORESCENCE STUDY [J].
LEENDERS, R ;
KOOIJMAN, M ;
VANHOEK, A ;
VEEGER, C ;
VISSER, AJWG .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1993, 211 (1-2) :37-45
[34]  
LEGALL J, 1967, CR ACAD SCI D NAT, V264, P2580
[35]   STRUCTURE AND OXIDATION REDUCTION BEHAVIOR OF 1-DEAZA-FMN FLAVODOXINS - MODULATION OF REDOX POTENTIALS IN FLAVODOXINS [J].
LUDWIG, ML ;
SCHOPFER, LM ;
METZGER, AL ;
PATTRIDGE, KA ;
MASSEY, V .
BIOCHEMISTRY, 1990, 29 (45) :10364-10375
[36]   PHOTOREDUCTION OF FLAVOPROTEINS AND OTHER BIOLOGICAL COMPOUNDS CATALYZED BY DE-AZA-FLAVINS [J].
MASSEY, V ;
HEMMERICH, P .
BIOCHEMISTRY, 1978, 17 (01) :9-16
[37]  
Mayhew S.G., 1992, CHEM BIOCH FLAVOENZY, V3, P389
[38]  
Mayhew S. G., 1975, ENZYMES, V12B, P57
[39]  
MAYHEW SG, 1969, J BIOL CHEM, V244, P803
[40]   PROPERTIES OF 2 CLOSTRIDIAL FLAVODOXINS [J].
MAYHEW, SG .
BIOCHIMICA ET BIOPHYSICA ACTA, 1971, 235 (02) :276-&