4.6 Article

Intact Functional Fourteen-subunit Respiratory Membrane-bound [NiFe]-Hydrogenase Complex of the Hyperthermophilic Archaeon Pyrococcus furiosus

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JOURNAL OF BIOLOGICAL CHEMISTRY
卷 289, 期 28, 页码 19364-19372

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M114.567255

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  1. National Institutes of Health [GM105404]
  2. Division of Chemical Sciences, Geosciences and Biosciences, Office of Basic Energy Sciences of the Department of Energy [DE-FG05-95ER20175]
  3. Department of Energy project Integrated Diffraction Analysis Technologies

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The archaeon Pyrococcus furiosus grows optimally at 100 degrees C by converting carbohydrates to acetate, CO2, and H-2, obtaining energy from a respiratory membrane-bound hydrogenase (MBH). This conserves energy by coupling H-2 production to oxidation of reduced ferredoxin with generation of a sodium ion gradient. MBH is encoded by a 14-gene operon with both hydrogenase and Na+/H+ antiporter modules. Herein a His-tagged MBH was expressed in P. furiosus and the detergent-solubilized complex purified under anaerobic conditions by affinity chromatography. Purified MBH contains all 14 subunits by electrophoretic analysis (13 subunits were also identified by mass spectrometry) and had a measured iron: nickel ratio of 15:1, resembling the predicted value of 13:1. The as-purified enzyme exhibited a rhombic EPR signal characteristic of the ready nickel-boron state. The purified and membrane-bound forms of MBH both preferentially evolved H-2 with the physiological donor (reduced ferredoxin) as well as with standard dyes. The O-2 sensitivities of the two forms were similar (half-lives of similar to 15 h in air), but the purified enzyme was more thermolabile (half-lives at 90 degrees C of 1 and 25 h, respectively). Structural analysis of purified MBH by small angle x-ray scattering indicated a Z-shaped structure with a mass of 310 kDa, resembling the predicted value (298 kDa). The angle x-ray scattering analyses reinforce and extend the conserved sequence relationships of group 4 enzymes and complex I (NADH quinone oxidoreductase). This is the first report on the properties of a solubilized form of an intact respiratory MBH complex that is proposed to evolve H-2 and pump Na+ ions.

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