Electron Transfer to the Trinuclear Copper Cluster in Electrocatalysis by the Multicopper Oxidases

被引:17
作者
Sekretareva, Alina [1 ,4 ]
Tian, Shiliang [1 ]
Gounel, Sebastien [2 ]
Mano, Nicolas [2 ,3 ]
Solomon, Edward, I [1 ,5 ]
机构
[1] Stanford Univ, Dept Chem, Stanford, CA 94305 USA
[2] Univ Bordeaux, UMR5031, CRPP, F-33600 Pessac, France
[3] CNRS, CRPP, UPR 8641, F-33600 Pessac, France
[4] Uppsala Univ, Dept Chem, Angstrom Lab, SE-75120 Uppsala, Sweden
[5] Stanford Univ, SLAC Natl Accelerator Lab, Stanford, CA 94025 USA
基金
美国国家卫生研究院;
关键词
BILIRUBIN OXIDASE; AXIAL LIGAND; ACTIVE-SITE; SPECTROSCOPIC CHARACTERIZATION; DIRECT ELECTROCHEMISTRY; PEROXIDE INTERMEDIATE; NATIVE INTERMEDIATE; DIOXYGEN REDUCTION; BACILLUS-PUMILUS; CU CLUSTER;
D O I
10.1021/jacs.1c08456
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
High-potential multicopper oxidases (MCOs) are excellent catalysts able to perform the oxygen reduction reaction (ORR) at remarkably low overpotentials. Moreover, MCOs are able to interact directly with the electrode surfaces via direct electron transfer (DET), that makes them the most commonly used electrocatalysts for oxygen reduction in biofuel cells. The central question in MCO electrocatalysis is whether the type 1 (T1) Cu is the primary electron acceptor site from the electrode, or whether electrons can be transferred directly to the trinuclear copper cluster (TNC), bypassing the rate-limiting intramolecular electron transfer step from the T1 site. Here, using site-directed mutagenesis and electrochemical methods combined with data modeling of electrode kinetics, we have found that there is no preferential superexchange pathway for DET to the T1 site. However, due to the high reorganization energy of the fully oxidized TNC, electron transfer from the electrode to the TNC does occur primarily through the T1 site. We have further demonstrated that the lower reorganization energy of the TNC in its two-electron reduced, alternative resting, form enables DET to the TNC, but this only occurs in the first turnover. This study provides insight into the factors that control the kinetics of electrocatalysis by the MCOs and a guide for the design of more efficient biocathodes for the ORR.
引用
收藏
页码:17236 / 17249
页数:14
相关论文
共 64 条
  • [1] Modeling Dioxygen Reduction at Multicopper Oxidase Cathodes
    Agbo, Peter
    Heath, James R.
    Gray, Harry B.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (39) : 13882 - 13887
  • [2] Site-Directed Immobilization of Bilirubin Oxidase for Electrocatalytic Oxygen Reduction
    Al-Lolage, Firas A.
    Bartlett, Philip N.
    Gounel, Sebastien
    Staigre, Priscilla
    Mano, Nicolas
    [J]. ACS CATALYSIS, 2019, 9 (03) : 2068 - 2078
  • [3] MECHANISM OF ELECTRON-TRANSFER IN LACCASE-CATALYZED REACTIONS
    ANDREASSON, LE
    REINHAMMAR, B
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA, 1979, 568 (01) : 145 - 156
  • [4] Comparison of Direct and Mediated Electron Transfer for Bilirubin Oxidase from Myrothecium Verrucaria. Effects of Inhibitors and Temperature on the Oxygen Reduction Reaction
    Antiochia, Riccarda
    Oyarzun, Diego
    Sanchez, Julio
    Tasca, Federico
    [J]. CATALYSTS, 2019, 9 (12)
  • [5] Spectroscopic studies of perturbed T1 Cu sites in the multicopper oxidases Saccharomyces cerevisiae Fet3p and Rhus vernicifera laccase:: Allosteric coupling between the T1 and trinuclear Cu sites
    Augustine, Anthony J.
    Kragh, Mads Emil
    Sarangi, Ritimukta
    Fujii, Satoshi
    Liboiron, Barry D.
    Stoj, Christopher S.
    Kosman, Daniel J.
    Hodgson, Keith O.
    Hedman, Britt
    Solomon, Edward I.
    [J]. BIOCHEMISTRY, 2008, 47 (07) : 2036 - 2045
  • [6] Bard A. J., 2000, ELECTROCHEMICAL METH, P92
  • [7] Spectroscopic analysis of the trinuclear cluster in the Fet3 protein from yeast, a multinuclear copper oxidase
    Blackburn, NJ
    Ralle, M
    Hassett, R
    Kosman, DJ
    [J]. BIOCHEMISTRY, 2000, 39 (09) : 2316 - 2324
  • [8] CARITHERS RP, 1981, J BIOL CHEM, V256, P7967
  • [9] Redox potentials of the blue copper sites of bilirubin oxidases
    Christenson, Andreas
    Shleev, Sergey
    Mano, Nicolas
    Heller, Adam
    Gorton, Lo
    [J]. BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS, 2006, 1757 (12): : 1634 - 1641
  • [10] SPECTROSCOPIC AND CHEMICAL STUDIES OF THE LACCASE TRINUCLEAR COPPER ACTIVE-SITE - GEOMETRIC AND ELECTRONIC-STRUCTURE
    COLE, JL
    CLARK, PA
    SOLOMON, EI
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (26) : 9534 - 9548