Coupling of the pathway of sulphur oxidation to dioxygen reduction:: characterization of a novel membrane-bound thiosulphate:quinone oxidoreductase

被引:126
作者
Müller, FH
Bandeiras, TM
Urich, T
Teixeira, M
Gomes, CM
Kletzin, A
机构
[1] TH Darmstadt, Inst Microbiol & Genet, D-64287 Darmstadt, Germany
[2] Univ Nova Lisboa, Inst Tecnol Quim & Biol, P-2781901 Oeiras, Portugal
[3] Univ Nova Lisboa, Fac Ciencias & Tecnol, Dept Quim, P-2825114 Caparica, Portugal
关键词
D O I
10.1111/j.1365-2958.2004.04193.x
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
Thiosulphate is one of the products of the initial step of the elemental sulphur oxidation pathway in the thermoacidophilic archaeon Acidianus ambivalens. A novel thiosulphate:quinone oxidoreductase (TQO) activity was found in the membrane extracts of aerobically grown cells of this organism. The enzyme was purified 21-fold from the solubilized membrane fraction. The TQO oxidized thiosulphate with tetrathionate as product and ferricyanide or decyl ubiquinone (DQ) as electron acceptors. The maximum specific activity with ferricyanide was 73.4 U (mg protein)(-1) at 92degreesC and pH 6, with DQ it was 397 mU (mg protein)(-1) at 80degreesC. The K-m values were 2.6 mM for thiosulphate (k(cat) = 167 s(-1)), 3.4 mM for ferricyanide and 5.87 muM for DQ. The enzymic activity was inhibited by sulphite (K-i = 5 muM), metabisulphite, dithionite and TritonX-100, but not by sulphate or tetrathionate. A mixture of caldariella quinone, sulfolobus quinone and menaquinone was non-covalently bound to the protein. No other cofactors were detected. Oxygen consumption was measured in membrane fractions upon thiosulphate addition, thus linking thiosulphate oxidation to dioxygen reduction, in what constitutes a novel activity among Archaea. The holoenzyme was composed of two subunits of apparent molecular masses of 28 and 16 kDa. The larger subunit appeared to be glycosylated and was identical to DoxA, and the smaller was identical to DoxD. Both subunits had been described previously as a part of the terminal quinol:oxygen oxidoreductase complex (cytochrome aa3).
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页码:1147 / 1160
页数:14
相关论文
共 48 条
[1]   Energetics of overall metabolic reactions of thermophilic and hyperthermophilic Archaea and Bacteria [J].
Amend, JP ;
Shock, EL .
FEMS MICROBIOLOGY REVIEWS, 2001, 25 (02) :175-243
[2]   CYTOCHROME-AA3 FROM SULFOLOBUS-ACIDOCALDARIUS A SINGLE-SUBUNIT, QUINOL-OXIDIZING ARCHAEBACTERIAL TERMINAL OXIDASE [J].
ANEMULLER, S ;
SCHAFER, G .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 191 (02) :297-305
[3]  
ANEMULLER S, 1994, FEMS MICROBIOL LETT, V117, P275, DOI 10.1111/j.1574-6968.1994.tb06779.x
[4]  
Dawson R.M.C., 1986, DATA BIOCH RES, P427
[5]   A motif for quinone binding sites in respiratory and photosynthetic systems [J].
Fisher, N ;
Rich, PR .
JOURNAL OF MOLECULAR BIOLOGY, 2000, 296 (04) :1153-1162
[6]  
Friedrich CG, 1998, ADV MICROB PHYSIOL, V39, P235
[7]   Oxidation of reduced inorganic sulfur compounds by bacteria: Emergence of a common mechanism? [J].
Friedrich, CG ;
Rother, D ;
Bardischewsky, F ;
Quentmeier, A ;
Fischer, J .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2001, 67 (07) :2873-2882
[8]   Novel genes coding for lithotrophic sulfur oxidation of Paracoccus pantotrophus GB17 [J].
Friedrich, CG ;
Quentmeier, A ;
Bardischewsky, F ;
Rother, D ;
Kraft, R ;
Kostka, S ;
Prinz, H .
JOURNAL OF BACTERIOLOGY, 2000, 182 (17) :4677-4687
[9]   16S rDNA-based phylogeny of the archaeal order Sulfolobales and reclassification of Desulfurolobus ambivalens as Acidianus ambivalens comb nov [J].
Fuchs, T ;
Huber, H ;
Burggraf, S ;
Stetter, KO .
SYSTEMATIC AND APPLIED MICROBIOLOGY, 1996, 19 (01) :56-60
[10]  
Kelly D. P., 1988, The Nitrogen and Sulphur Cycles. Proceedings of the 42nd Symposium of the Society for General Microbiology. Southampton, UK, January 1988., P65