Enzyme electrokinetics:: Electrochemical studies of the anaerobic interconversions between active and inactive states of Allochromatium vinosum [NiFe]-hydrogenase

被引:135
作者
Jones, AK
Lamle, SE
Pershad, HR
Vincent, KA
Albracht, SPJ
Armstrong, FA
机构
[1] Univ Oxford, Inorgan Chem Lab, Oxford OX1 3QR, England
[2] Univ Amsterdam, Swammerdam Inst Life Sci, NL-1018 TV Amsterdam, Netherlands
关键词
D O I
10.1021/ja035296y
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The cycling between active and inactive states of the catalytic center of [NiFe]-hydrogenase from Allochromatium vinosum has been investigated by dynamic electrochemical techniques. Adsorbed on a rotating disk pyrolytic graphite "edge" electrode, the enzyme is highly electroactive: this allows precise manipulations of the complex redox chemistry and facilitates quantitative measurements of the interconversions between active catalytic states and the inactive oxidized form Ni-r* (also called Ni-B or "ready") as functions of pH, H-2 partial pressure, temperature, and electrode potential. Cyclic voltammograms for catalytic H-2 oxidation (current is directly related to turnover rate) are highly asymmetric (except at pH > 8 and high temperature) due to inactivation being much slower than activation. Controlled potential-step experiments show that the rate of oxidative inactivation increases at high pH but is independent of potential, whereas the rate of reductive activation increases as the potential becomes more negative. Indeed, at 45 degreesC, activation takes just a few seconds at -288 mV. The cyclic asymmetry arises because interconversion is a two-stage reaction, as expected if the reduced inactive Ni-r-S state is an intermediate. The rate of inactivation depends on a chemical process (rearrangement and uptake of a ligand) that is independent of potential, but sensitive to pH, while activation is driven by an electron-transfer process, Ni(III) to Ni(II), that responds directly to the driving force. The potentials at which fast activation occurs under different conditions have been analyzed to yield the potential-pH dependence and the corresponding entropies and enthalpies. The reduced (active) enzyme shows a pK of 7.6; thus, when a one-electron process is assumed, reductive activation at pH < 7 involves a net uptake of one proton (or release of one hydroxide), whereas, at pH > 8, there is no net exchange of protons with solvent. Activation is favored by a large positive entropy, consistent with the release of a ligand and/or relaxation of the structure around the active site.
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收藏
页码:8505 / 8514
页数:10
相关论文
共 52 条
[1]   HYDROGENASE [J].
ADAMS, MWW ;
MORTENSON, LE ;
CHEN, JS .
BIOCHIMICA ET BIOPHYSICA ACTA, 1980, 594 (2-3) :105-176
[2]  
Albracht S. P. J., 2001, HYDROGEN FUEL LEARNI
[3]   MAGNETIC INTERACTION OF NICKEL(III) AND THE IRON-SULFUR CLUSTER IN HYDROGENASE FROM CHROMATIUM-VINOSUM [J].
ALBRACHT, SPJ ;
KALKMAN, ML ;
SLATER, EC .
BIOCHIMICA ET BIOPHYSICA ACTA, 1983, 724 (03) :309-316
[4]   NICKEL HYDROGENASES - IN SEARCH OF THE ACTIVE-SITE [J].
ALBRACHT, SPJ .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 1994, 1188 (03) :167-204
[5]   Insights from protein film voltammetry into mechanisms of complex biological electron-transfer reactions [J].
Armstrong, FA .
JOURNAL OF THE CHEMICAL SOCIETY-DALTON TRANSACTIONS, 2002, (05) :661-671
[6]   Reactions of complex metalloproteins studied by protein-film voltammetry [J].
Armstrong, FA ;
Heering, HA ;
Hirst, J .
CHEMICAL SOCIETY REVIEWS, 1997, 26 (03) :169-179
[7]   ELECTROCATALYTIC REDUCTION OF HYDROGEN-PEROXIDE AT A STATIONARY PYROLYTIC-GRAPHITE ELECTRODE SURFACE IN THE PRESENCE OF CYTOCHROME-C PEROXIDASE - A DESCRIPTION BASED ON A MICROELECTRODE ARRAY MODEL FOR ADSORBED ENZYME MOLECULES [J].
ARMSTRONG, FA ;
BOND, AM ;
BUCHI, FN ;
HAMNETT, A ;
HILL, HAO ;
LANNON, AM ;
LETTINGTON, OC ;
ZOSKI, CG .
ANALYST, 1993, 118 (08) :973-978
[8]   INFRARED-DETECTABLE GROUPS SENSE CHANGES IN CHARGE-DENSITY ON THE NICKEL CENTER IN HYDROGENASE FROM CHROMATIUM-VINOSUM [J].
BAGLEY, KA ;
DUIN, EC ;
ROSEBOOM, W ;
ALBRACHT, SPJ ;
WOODRUFF, WH .
BIOCHEMISTRY, 1995, 34 (16) :5527-5535
[9]   INFRARED STUDIES ON THE INTERACTION OF CARBON-MONOXIDE WITH DIVALENT NICKEL IN HYDROGENASE FROM CHROMATIUM-VINOSUM [J].
BAGLEY, KA ;
VANGARDEREN, CJ ;
CHEN, M ;
DUIN, EC ;
ALBRACHT, SPJ ;
WOODRUFF, WH .
BIOCHEMISTRY, 1994, 33 (31) :9229-9236
[10]   STABILITY OF THE NI-C STATE AND OXIDATIVE TITRATIONS OF DESULFOVIBRIO-GIGAS HYDROGENASE MONITORED BY EPR AND ELECTRONIC ABSORPTION SPECTROSCOPIES [J].
BARONDEAU, DP ;
ROBERTS, LM ;
LINDAHL, PA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1994, 116 (08) :3442-3448