Changing the ligation of the distal [4Fe4S] cluster in NiFe hydrogenase impairs inter- and intramolecular electron transfers

被引:81
作者
Dementin, S
Belle, V
Bertrand, P
Guigliarelli, B
Adryanczyk-Perrier, G
De Lacey, AL
Fernandez, VM
Rousset, M
Léger, C
机构
[1] CNRS, Lab Bioenerget & Ingn Prot, UPR 9036, IBSM, F-13402 Marseille 20, France
[2] Univ Aix Marseille 1, F-13402 Marseille 20, France
[3] CSIC, Inst Catalisis, E-28049 Madrid, Spain
关键词
D O I
10.1021/ja060233b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In NiFe hydrogenases, electrons are transferred from the active site to the redox partner via a chain of three Iron-Sulfur clusters, and the surface-exposed [4Fe4S] cluster has an unusual His(Cys)(3) ligation. When this Histidine (H184 in Desulfovibrio fructosovorans) is changed into a cysteine or a glycine, a distal cubane is still assembled but the oxidative activity of the mutants is only 1.5 and 3% of that of the WT, respectively. We compared the activities of the WT and engineered enzymes for H-2 oxidation, H+ reduction and H/D exchange, under various conditions: (i) either with the enzyme directly adsorbed onto an electrode or using soluble redox partners, and (ii) in the presence of exogenous ligands whose binding to the exposed Fe of H184G was expected to modulate the properties of the distal cluster. Protein film voltammetry proved particularly useful to unravel the effects of the mutations on inter and intramolecular electron transfer (ET). We demonstrate that changing the coordination of the distal cluster has no effect on cluster assembly, protein stability, active-site chemistry and proton transfer; however, it slows down the first-order rates of ET to and from the cluster. All-sulfur coordination is actually detrimental to ET, and intramolecular (uphill) ET is rate determining in the glycine variant. This demonstrates that although [4Fe4S] clusters are robust chemical constructs, the direct protein ligands play an essential role in imparting their ability to transfer electrons.
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页码:5209 / 5218
页数:10
相关论文
共 53 条
  • [1] ALBRACHT SP, 1998, BIOCHIM BIOPHYS ACTA, V1318, P92
  • [2] Protein film voltammetry reveals distinctive fingerprints of nitrite and hydroxylamine reduction by a cytochrome c nitrite reductase
    Angove, HC
    Cole, JA
    Richardson, DJ
    Butt, JN
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (26) : 23374 - 23381
  • [3] Recent developments in dynamic electrochemical studies of adsorbed enzymes and their active sites
    Armstrong, FA
    [J]. CURRENT OPINION IN CHEMICAL BIOLOGY, 2005, 9 (02) : 110 - 117
  • [4] Hydrogenases: active site puzzles and progress
    Armstrong, FA
    [J]. CURRENT OPINION IN CHEMICAL BIOLOGY, 2004, 8 (02) : 133 - 140
  • [5] Insights into the respiratory electron transfer pathway from the structure of nitrate reductase A
    Bertero, MG
    Rothery, RA
    Palak, M
    Hou, C
    Lim, D
    Blasco, F
    Weiner, JH
    Strynadka, NCJ
    [J]. NATURE STRUCTURAL BIOLOGY, 2003, 10 (09) : 681 - 687
  • [6] Is there a rate-limiting step in the catalytic cycle of [Ni-Fe] hydrogenases?
    Bertrand, P
    Dole, F
    Asso, M
    Guigliarelli, B
    [J]. JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY, 2000, 5 (06): : 682 - 691
  • [7] DNA-mediated charge transport for DNA repair
    Boon, EM
    Livingston, AL
    Chmiel, NH
    David, SS
    Barton, JK
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (22) : 12543 - 12547
  • [8] The [Fe-Fe]-hydrogenase maturation protein HydF from Thermotoga maritima is a GTPase with an iron-sulfur cluster
    Brazzolotto, X
    Rubach, JK
    Gaillard, J
    Gambarelli, S
    Atta, M
    Fontecave, M
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (02) : 769 - 774
  • [9] VOLTAMMETRIC CHARACTERIZATION OF RAPID AND REVERSIBLE BINDING OF AN EXOGENOUS THIOLATE LIGAND AT A [4FE-4S] CLUSTER IN FERREDOXIN-III FROM DESULFOVIBRIO-AFRICANUS
    BUTT, JN
    SUCHETA, A
    ARMSTRONG, FA
    BRETON, J
    THOMSON, AJ
    HATCHIKIAN, EC
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1993, 115 (04) : 1413 - 1421
  • [10] Cammack R., 2001, Hydrogen as a Fuel Learning from Nature