NO reduction by nitric-oxide reductase from denitrifying bacterium Pseudomonas aeruginosa -: Characterization of reaction intermediates that appear in the single turnover cycle

被引:90
作者
Kumita, H
Matsuura, K
Hino, T
Takahashi, S
Hori, H
Fukumori, Y
Morishima, I
Shiro, Y
机构
[1] RIKEN Harima Inst SPring 8, Sayo, Hyogo 6795148, Japan
[2] Kyoto Univ, Grad Sch Engn, Dept Mol Engn, Kyoto 6158501, Japan
[3] Osaka Univ, Grad Sch Engn Sci, Div Bioengn, Osaka 5608531, Japan
[4] Kanazawa Univ, Grad Sch Nat Sci & Technol, Dept Life Sci, Kanazawa, Ishikawa 9201192, Japan
关键词
D O I
10.1074/jbc.M409996200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Nitric-oxide reductase (NOR) of a denitrifying bacterium catalyzes NO reduction to N2O at the binuclear catalytic center consisting of high spin heme b(3) and non-heme Fe-B. The structures of the reaction intermediates in the single turnover of the NO reduction by NOR from Pseudomonas aeruginosa were investigated using optical absorption and EPR spectroscopies combined with an originally designed freeze-quench device. In the EPR spectrum of the sample, in which the fully reduced NOR was mixed with an NO solution and quenched at 0.5 ms after the mixing, two characteristic signals for the ferrous Fe-B - NO and the penta-coordinated ferrous heme b(3) - NO species were observed. The CO inhibition of its formation indicated that two NO molecules were simultaneously distributed into the two irons of the same binuclear center of the enzyme in this state. The time- and temperature-dependent EPR spectral changes indicated that the species that appeared at 0.5 ms is a transient reaction intermediate prior to the N2O formation, in good agreement with the so-called "trans" mechanism. It was also found that the final state of the enzyme in the single turnover cycle is the fully oxidized state, in which the mu-oxo-bridged ligand is absent between the two irons of its binuclear center, unlike the resting form of NOR as isolated. On the basis of these present findings, we propose a newly developed mechanism for the NO reduction reaction conducted by NOR.
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页码:55247 / 55254
页数:8
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