Reduction Potentials of [FeFe]-Hydrogenase Accessory Iron-Sulfur Clusters Provide Insights into the Energetics of Proton Reduction Catalysis

被引:40
|
作者
Artz, Jacob H. [1 ]
Mulder, David W. [2 ]
Ratzloff, Michael W. [2 ]
Lubner, Carolyn E. [2 ]
Zadvornyy, Oleg A. [1 ]
LeVan, Axl X. [3 ]
Williams, S. Garrett [4 ]
Adams, Michael W. W. [5 ]
Jones, Anne K. [4 ]
King, Paul W. [2 ]
Peters, John W. [1 ]
机构
[1] Washington State Univ, Inst Biol Chem, 258 Clark Hall, Pullman, WA 99163 USA
[2] Natl Renewable Energy Lab, Biosci Ctr, 15013 Denver West Pkwy, Golden, CO 80401 USA
[3] Montana State Univ, Dept Chem & Biochem, 224 Chem & Biochem Bldg, Bozeman, MT 59717 USA
[4] Arizona State Univ, Sch Mol Sci, POB 871604, Tempe, AZ 85287 USA
[5] Univ Georgia, Dept Biochem, B216B Life Sci Complex, Athens, GA 30602 USA
关键词
NADH-UBIQUINONE OXIDOREDUCTASE; COMPLEX-I; HYDROGENASE-I; CLOSTRIDIUM-PASTEURIANUM; FEFE HYDROGENASES; ELECTRON-TRANSFER; NIFE HYDROGENASE; CARBON-MONOXIDE; H-2; ACTIVATION; ACTIVE-SITE;
D O I
10.1021/jacs.7b02099
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
An [FeFe]-hydrogenase from Clostridium pasteurianum, CpI, is a model system for biological H-2 activation. In addition to the catalytic H-cluster, CpI contains four accessory iron-sulfur [FeS] clusters in a branched series that transfer electrons to and from the active site. In this work, potentiometric titrations have been employed in combination with electron paramagnetic resonance (EPR) spectroscopy at defined electrochemical potentials to gain insights into the role of the accessory clusters in catalysis. EPR spectra collected over a range of potentials were deconvoluted into individual components attributable to the accessory [FeS] clusters and the active site H-cluster, and reduction potentials for each cluster were determined. The data suggest a large degree of magnetic coupling between the clusters. The distal [4Fe-4S] cluster is shown to have a lower reduction potential (similar to < -450 mV) than the other clusters, and molecular docking experiments indicate that the physiological electron donor, ferredoxin (Fd), most favorably interacts with this cluster. The low reduction potential of the distal [4Fe-4S] cluster thermodynamically restricts the Fd(ox)/Fd(red) ratio at which CpI can operate, consistent with the role of CpI in recycling Fd(red) that accumulates during fermentation. Subsequent electron transfer through the additional accessory [FeS] clusters to the H-cluster is thermodynamically favorable.
引用
收藏
页码:9544 / 9550
页数:7
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