Evidence that a type-2 NADH:quinone oxidoreductase mediates electron transfer to particulate methane monooxygenase in Methylococcus capsulatus

被引:43
作者
Cook, SA [1 ]
Shiemke, AK [1 ]
机构
[1] W Virginia Univ, Sch Med, Robert C Byrd Hlth Sci Ctr, Dept Biochem, Morgantown, WV 26506 USA
关键词
methanotroph; methane oxidation; quinones; quinone reductase;
D O I
10.1006/abbi.2001.2628
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
NADH readily provides reducing equivalents to membrane-bound methane monooxygenase (pMMO) from Methylococcus capsulatus (Bath) in isolated membrane fractions, but detergent solubilization disrupts this electron-transfer process. Addition of exogenous quinones (especially decyl-plastoquinone and duroquinone) restores the NADH-dependent pMMO activity. Results of inhibitor and substrate dependence of this activity indicate the presence of only a type-2 NADH:quinone oxidoreductase (NDH-2). A 100-fold purification of the NDH-2 was achieved using lauryl-maltoside solubilization followed by ion exchange, hydrophobic-interaction, and gel-filtration chromatography. The purified NDH-2 has a subunit molecular weight of 36 kDa and exists as a monomer in solution. UV-visible and fluorescence spectroscopy identified flavin adenine dinucleotide (FAD) as a cofactor present in stoichiometric amounts. NADH served as the source of electrons, whereas NADPH could not. The purified NDH-2 enzyme reduced coenzyme Q(0), duroquinone, and menaquinone at high rates, whereas the decyl analogs of ubiquinone and plastoquinone were reduced at similar to100-fold lower rates. Rotenone and flavone did not inhibit the NDH-2, whereas amytal caused partial inhibition but only at high concentrations. (C) 2002 Elsevier Science.
引用
收藏
页码:32 / 40
页数:9
相关论文
共 41 条
[1]   Targeting the plant alternative oxidase protein to Schizosaccharomyces pombe mitochondria confers cyanide-insensitive respiration [J].
Albury, MS ;
Dudley, P ;
Watts, FZ ;
Moore, AL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (29) :17062-17066
[2]   BACTERIAL OXIDATION OF METHANE AND METHANOL [J].
ANTHONY, C .
ADVANCES IN MICROBIAL PHYSIOLOGY, 1986, 27 :113-210
[3]  
ANTHONY C, 1982, BIOCH METHANOTROPHS
[4]   CYANOBACTERIA CONTAIN A MITOCHRONDRIAL COMPLEX-I-HOMOLOGOUS NADH-DEHYDROGENASE [J].
BERGER, S ;
ELLERSIEK, U ;
STEINMULLER, K .
FEBS LETTERS, 1991, 286 (1-2) :129-132
[5]  
BERGSMA J, 1982, EUR J BIOCHEM, V128, P151
[6]   SOLUBLE METHANE MONO-OXYGENASE OF METHYLOCOCCUS-CAPSULATUS-(BATH) - ABILITY TO OXYGENATE NORMAL-ALKANES, NORMAL-ALKENES, ETHERS, AND ALICYCLIC, AROMATIC AND HETEROCYCLIC-COMPOUNDS [J].
COLBY, J ;
STIRLING, DI ;
DALTON, H .
BIOCHEMICAL JOURNAL, 1977, 165 (02) :395-402
[7]   ISOLATION AND CHARACTERIZATION OF A NOVEL COENZYME-Q FROM SOME METHANE-OXIDIZING BACTERIA [J].
COLLINS, MD ;
GREEN, PN .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1985, 133 (03) :1125-1131
[8]   Evidence that copper is a required cofactor for the membrane-bound form of methane monooxygenase [J].
Cook, SA ;
Shiemke, AK .
JOURNAL OF INORGANIC BIOCHEMISTRY, 1996, 63 (04) :273-284
[9]  
Dawson R.M. C., 2002, DATA BIOCH RES
[10]  
DEVRIES S, 1988, EUR J BIOCHEM, V176, P377