References
Akey CW, Moffat K, Wharton DC, Edelstein SJ (1980) Characterization of crystals of a cytochrome oxidase (nitrite reductase) from Pseudomonas aeruginosa by X-ray diffraction and electron microscopy. J Mol Biol 136: 19–43
Alefounder PR, Ferguson SJ (1980) The location of dissimilatory nitrite reductase and the control of dissimilatory nitrate reductase by oxygen in Paracoccus denitrificans. Biochem J 192: 231–240
Anderson IC, Levine JS (1986) Relative rates of nitric oxide and nitrous oxide production by nitrifiers, denitrifiers, and nitrate respirers. Appl Environ Microbiol 51: 938–945
Anthony LSD, Morrissey PJ, Nano FE (1992) Growth inhibition of Francisella tularensis live vaccine strain by IFN-γ-activated macrophages is mediated by reactive nitrogen intermediates derived from l-arginine metabolism. J Immunol 148: 1829–1834
Arai H, Igarashi Y, Kodama T (1991) Anaerobically induced expression of the nitrite reductase cytochrome c-551 operon from Pseudomonas aeruginosa. FEBS Lett 280: 351–353
Baalsrud K, Baalsrud KS (1954) Studies on Thiobacillus denitrificans. Arch Mikrobiol 20: 34–62
Baumgärtner M, Sameluck F, Bock E, Conrad R (1991) Production of nitric oxide by ammonium-oxidizing bacteria colonizing building stones. FEMS Microbiol Ecol 85: 95–100
Bell LC, Ferguson SJ (1991) Nitric and nitrous oxide reductases are active under aerobic conditions in cells of Thiosphaera pantotropha. Biochem J 273: 423–427
Bell LC, Richardson DJ, Ferguson SJ (1992) Identification of nitric oxide reductase activity in Rhodobacter capsulatus: the electron transport pathway can either use or bypass both cytochrome c 2 and the cytochrome bc 1 complex. J Gen Microbiol 138: 437–443
Bonner FT, Hughes MN (1993) No lack of NO activity. Science 260: 145–146
Boucher J-L, Genet A, Vadon S, Delaforge M, Henry Y, Mansuy D (1992) Cytochrome P450 catalyzes the oxidation of NG-hydroxy-l-arginine by NADPH and O2 to nitric oxide and citrulline. Biochem Biophys Res Commun 187: 880–886
Braun C, Zumft WG (1991) Marker exchange of the structural genes for nitric oxide reductase blocks the denitrification pathway of Pseudomonas stutzeri at nitric oxide. J Biol Chem 266: 22 785–22 788
Braun C, Zumft WG (1992) The structural genes of the nitric oxide reductase complex from Pseudomonas stutzeri are part of a 30-kilobase gene cluster for denitrification. J Bacteriol 174: 2394–2397
Brew FR, Forsythe SJ (1990) The rapid nitrosation of 2,3-diaminonaphthalene by gastric isolates of Neisseria subflava. Lett Appl Microbiol 10: 39–43
Brons HJ, Hagen WR, Zehnder AJB (1991) Ferrous iron dependent nitric oxide production in nitrate reducing cultures of Escherichia coli. Arch Microbiol 155: 341–347
Caballero FJ, Igeño MI, Quiles R, Castillo F (1992) In vivo inhibition of nitrogenase by hydroxylamine in Rhodospirillaceae. Role of nitric oxide. Arch Microbiol 158: 14–18
Calmels S, Ohshima H, Bartsch H (1988) Nitrosamine formation by denitrifying and nondenitrifying bacteria: implication of nitrite reductase and nitrate reductase in nitrosation catalysis. J Gen Microbiol 134: 221–226
Calmels S, Venezia ND, Bartsch H (1990) Isolation of an enzyme catalysing nitrosamine formation in Pseudomonas aeruginosa and Neisseria mucosae. Biochem Biophys Res Commun 171: 655–660
Carr GJ, Ferguson SJ (1990a) Nitric oxide formed by nitrite reductase of Paracoccus denitrificans is sufficiently stable to inhibit cytochrome oxidase activity and is reduced by its reductase under aerobic conditions. Biochim Biophys Acta 1017: 57–62
Carr GJ, Ferguson SJ (1990b) The nitric-oxide reductase of Paracoccus denitrificans. Biochem J 269: 423–429
Carr GJ, Page MD, Ferguson SJ (1989) The energy-conserving nitric-oxide-reductase system in Paracoccus denitrificans. Distinction from the nitrite reductase that catalyses synthesis of nitric oxide and evidence from trapping experiments for nitric oxide as a free intermediate during denitrification. Eur J Biochem 179: 683–692
Costa C, Macedo A, Moura I, Moura JJG, LeGall J, Berlier Y, Liu M-Y, Payne WJ (1990) Regulation of the hexaheme nitrite/nitric oxide reductase of Desulfovibrio desulfuricans, Wolinella succinogenes and Escherichia coli. A mass spectrometric study. FEBS Lett 276: 67–70
Coyne MS, Arunakumari A, Averill BA, Tiedje JM (1989) Immunological identification and distribution of dissimilatory heme cd 1 and nonheme copper nitrite reductases in denitrifying bacteria. Appl Environ Microbiol 55: 2924–2931
Coyne MS, Arunakumari A, Pankratz HS, Tiedje JM (1990) Localization of the cytochrome cd 1 and copper nitrite reductases in denitrifying bacteria. J Bacteriol 172: 2558–2562
Cui X, Joannou CL, Hughes MN, Cammack R (1992) The bacteriocidal effects of transition metal complexes containing the NO+ group on the food-spoilage bacterium Clostridium sporogenes. FEMS Microbiol Lett 98: 67–70
Cuypers H, Zumft WG (1992) Regulatory components of the denitrification gene cluster of Pseudomonas stutzeri. In: Galli E, Silver S, Witholt B (eds) Pseudomonas: molecular biology and biotechnology. American Society for Microbiology, Washington, DC, pp 188–197
Cuypers H, Zumft WG (1993) Identification and mutagenesis of the fnr homolog of Pseudomonas stutzeri (V114). BioEngineering 9 (1): 21
Denariaz G, Payne WJ, LeGall J (1991) The denitrifying nitrite reductase of Bacillus halodenitrificans. Biochim Biophys Acta 1056: 225–232
Dermastia M, Turk T, Hollocher TC (1991) Nitric oxide reductase. Purification from Paracoccus denitrificans with use of a single column and some characteristics. J Biol Chem 266: 10 899–10 905
Dhesi R, Timkovich R (1984) Patterns of product inhibition for bacterial nitrite reductase. Biochem Biophys Res Commun 123: 966–972
Dimmeler S, Lottspeich F, Brüne B (1992) Nitric oxide causes ADP-ribosylation and inhibition of glyceraldehyde-3-phosphate dehydrogenase. J Biol Chem 267: 16 771–16 774
DiSpirito AA, Taaffe LR, Lipscomb JD, Hooper AB (1985) A ‘blue’ copper oxidase from Nitrosomonas europaea. Biochim Biophys Acta 827: 320–326
Edelman GM, Gally JA (1992) Nitric oxide: linking space and time in the brain. Proc Natl Acad Sci USA 89: 11 651–11 652
Fenderson FF, Kumar S, Adman ET, Liu M-Y, Payne WJ, LeGall J (1991) Amino acid sequence of nitrite reductase: a copper protein from Achromobacter cycloclastes. Biochemistry 30: 7180–7185
Ferguson SJ (1988) The redox reactions of the nitrogen and sulphur cycles. Symp Soc Gen Microbiol 42: 1–29
Flesch IEA, Kaufmann SHE (1991) Mechanisms involved in mycobacterial growth inhibition by gamma interferon-activated bone marrow macrophages: role of reactive nitrogen intermediates. Infect Immun 59: 3213–3218
Frunzke K, Zumft WG (1986) Inhibition of nitrous-oxide respiration by nitric oxide in the denitrifying bacterium Pseudomonas perfectomarina. Biochim Biophys Acta 852: 119–125
Garber EAE, Hollocher TC (1982) Positional isotopic equivalence of nitrogen in N2O produced by the denitrifying bacterium Pseudomonas stutzeri. Indirect evidence for a nitroxyl pathway. J Biol Chem 257: 4705–4708
Garber EAE, Castignetti D, Hollocher TC (1982) Proton translocation and proline uptake associated with reduction of nitric oxide by denitrifying Paracoccus denitrificans. Biochem Biophys Res Commun 107: 1504–1507
Gayon U, Dupetit G (1886) Recherches sur la réduction des nitrates par les infiniment petits. Mem Soc Sci Phys Nat (Bordeaux) Ser 3: 201–307
Girard P, Potier P (1993) NO, thiols and disulfides. FEBS Lett 320: 7–8
Glockner AB, Jüngst A, Zumft WG (1993) Copper-containing nitrite reductase from Pseudomonas aureofaciens is functional in a mutationally cytochrome cd 1-free background (NirS-) of Pseudomonas stutzeri. Arch Microbiol 160: 18–26
Godden JW, Turley S, Teller DC, Adman ET, Liu M-Y, Payne WJ, LeGall J (1991) The 2.3 Ångstrom X-ray structure of nitrite reductase from Achromobacter cycloclastes. Science 253: 438–442
Goretski J, Hollocher TC (1988) Trapping of nitric oxide produced during denitrification by extracellular hemoglobin. J Biol Chem 263: 2316–2323
Goretski J, Hollocher TC (1990) The kinetic and isotopic competence of nitric oxide as an intermediate in denitrification. J Biol Chem 265: 889–895
Goretski J, Zafiriou OC, Hollocher TC (1990) Steady-state nitric oxide concentrations during denitrification. J Biol Chem 265: 1535–1538
Grant MA, Cronin SE, Hochstein LI (1984) Solubilization and resolution of the membrane-bound nitrite reductase from Paracoccus halodenitrificans into nitrite and nitric oxide reductases. Arch Microbiol 140: 183–186
Gregory SH, Wing EJ, Hoffman RA, Simmons RL (1993) Reactive nitrogen intermediates suppress the primary immunologic response to Listeria. J Immunol 150: 2901–2909
Guest JR (1992) Oxygen-regulated gene expression in Excherichia coli. J Gen Microbiol 138: 2253–2263
Heijne G von (1992) Membrane protein structure prediction. Hydrophobicity analysis and the positive-inside rule. J Mol Biol 225: 487–494
Heiss B, Frunzke K, Zumft WG (1989) Formation of the N−N bond from nitric oxide by a membrane-bound cytochrome bc complex of nitrate-respiring (denitrifying) Pseudomonas stutzeri. J Bacteriol 171: 3288–3297
Henry Y, Ducrocq C, Drapier J-C, Servent D, Pellat C, Guissani A (1991) Nitric oxide, a biological effector. Electron paramagnetic resonance detection of nitrosyl-iron-protein complexes in whole cells. Eur Biophys J 20: 1–15
Hochstein LI, Betlach M, Kritikos G (1984) The effect of oxygen on denitrification during steady-state growth of Paracoccus halodenitrificans. Arch Microbiol 137: 74–78
Hoglen J, Hollocher TC (1989) Purification and some characteristics of nitric oxide reductase-containing vesicles from Paracoccus denitrificans. J Biol Chem 264: 7556–7563
Ignarro LJ, Buga GM, Wood KS, Byrns RE, Chaudhuri G (1987) Endothelium-derived relaxing factor produced and released from artery and vein is nitric oxide. Proc Natl Acad Sci USA 84: 9265–9269
Itoh M, Mizukami S, Matsuura K, Satoh T (1989) Involvement of cytochrome bc 1 complex and cytochrome c 2 in the electron-transfer pathway for NO reduction in a photodenitrifier Rhodobacter sphaeroides f.s. denitrificans. FEBS Lett 244: 81–84
Iwasaki H, Matsubayashi R, Mori T (1956) Studies on denitrification. II. Production of nitric oxide and its utilization in the N-N-linkage formation by denitrifying bacteria. J Biochem 43: 295–305
Iwasaki H, Shidara S, Suzuki H, Mori T (1963) Studies on denitrification. VII. Further purification and properties of denitrifying enzyme. J Biochem 53: 299–303
Jackson MA, Tiedje JM, Averill BA (1991) Evidence for an NO-rebound mechanism for production of N2O from nitrite by the copper-containing nitrite reductase from Achromobacter cyclo-clastes. FEBS Lett 291: 41–44
Jenkinson DS (1990) An introduction to the global nitrogen cycle. Soil Use Manag 6: 56–61
Ji X-B, Hollocher TC (1988) Mechanism for nitrosation of 2,3-diaminonaphthalene by Escherichia coli: enzymatic production of NO followed by O2-dependent chemical nitrosation. Appl Environ Microbiol 54: 1791–1794
Ji X-B, Hollocher TC (1989) Nitrate reductase of Escherichia coli as a NO-producing nitrite reductase. Biochem Arch 5: 61–66
Jüngst A, Zumft WG (1992) Interdependence of respiratory NO reduction and nitrite reduction revealed by mutagenesis of nirQ, a novel gene in the denitrification gene cluster of Pseudomonas stutzeri. FEBS Lett 314: 308–314
Jüngst A, Braun C, Zumft WG (1991 a) Close linkage in Pseudomonas stutzeri of the structural genes for respiratory nitrite reductase and nitrous oxide reductase, and other essential genes for denitrification. Mol Gen Genet 225: 241–248
Jüngst A, Wakabayashi S, Matsubara H, Zumft WG (1991 b) The nirSTBM region coding for cytochrome-cd 1-dependent nitrite respiration of Pseudomonas stutzeri consists of a cluster of mono-, di-, and tetraheme proteins. FEBS Lett 279: 205–209
Kakutani T, Watanabe H, Arima K, Beppu T (1981) Purification and properties of a copper-containing nitrite reductase from a denitrifying bacterium, Alcaligenes faecalis strain S-6. J Biochem 89: 453–461
Kaldorf M, Bothe H (1993) Demonstration of an N2O-reductase in Escherichia coli (V451). BioEngineering 9 (1): 41
Kalkowski I, Conrad R (1991) Metabolism of nitric oxide in denitrifying Pseudomonas aeruginosa and nitrate-respiring Bacillus cereus. FEMS Microbiol Lett 82: 107–111
Körner H (1993) Anaerobic expression of nitric oxide reductase from denitrifying Pseudomonas stutzeri. Arch Microbiol 159: 410–416
Körner H, Mayer F (1992) Periplasmic location of nitrous oxide reductase and its apoform in denitrifying Pseudomonas stutzeri. Arch Microbiol 157: 218–222
Koike I, Hattori A (1975) Energy yield of denitrification: an estimate from growth yield in continuous cultures of Pseudomonas denitrificans under nitrate-, nitrite- and nitrous oxidelimited conditions. J Gen Microbiol 88: 11–19
Kučera I (1992) Oscillations of nitric oxide concentration in the perturbed denitrification pathway of Paracoccus denitrificans. Biochem J 286: 111–116
Lancaster JR, Hibbs JB (1990) EPR demonstration of iron-nitrosyl complex formation by cytotoxic activated macrophages. Proc Natl Acad Sci USA 87: 1223–1227
Lepoivre M, Fieschi F, Coves J, Thelander L, Fontecave M (1991) Inactivation of ribonucleotide reductase by nitric oxide. Biochem Biophys Res Commun 179: 442–448
Libby F, Averill BA (1992) Evidence that the type 2 copper centers are the site of nitrite reduction by Achromobacter cycloclastes nitrite reductase. Biochem Biophys Res Commun 187: 1529–1535
Lipschultz F, Zafiriou OC, Wofsy SC, McElroy MB, Valois FW, Watson SW (1981) Production of NO and N2O by soil nitrifying bacteria. Nature 294: 641–643
Ludwig W, Mittenhuber G, Friedrich CG (1993) Transfer of Thiosphaera pantotropha to Paracoccus denitrificans. Int J Syst Bacteriol 43: 363–367
Mancinelli RL, Mckay CP (1983) Effects of nitric oxide and nitrogen dioxide on bacterial growth. Appl Environ Microbiol 46: 198–202
Mancinell RL, Cronin S, Hochstein LI (1986) The purification and properties of a cd-cytochrome nitrite reductase from Paracoccus halodenitrificans. Arch Microbiol 145: 202–208
Marletta MA, Yoon PS, Iyengar R, Leaf CD, Wishnok JS (1988) Macrophage oxidation of l-arginine to nitrite and nitrate: nitric oxide is an intermediate. Biochemistry 21: 8706–8711
Marletta MA, Tayeh MA, Hevel JM (1990) Unraveling the biological significance of nitric oxide. BioFactors 2: 219–225
Masuko M, Iwasaki H, Sakurai T, Suzuki S, Nakahara A (1984) Characterization of nitrite reductase from a denitrifier, Alcali-genes Sp. NCIB 11015. A novel copper protein. J Biochem 96: 447–454
Matsubara T, Iwasaki H (1971) Enzymatic steps of dissimilatory nitrite reduction in Alcaligenes faecalis. J Biochem 69: 859–868
Matsubara T, Mori T (1968) Studies on denitrification. IX. Nitrous oxide, its production and reduction to nitrogen. J Biochem 64: 863–871
Matthews JC, Timkovich R (1993) Biosynthetic origin of the carbon skeleton of heme d 1. Bioorg Chem (in press)
Meyer J (1981) Comparison of carbon monoxide, nitric oxide, and nitrite as inhibitors of the nitrogenase from Clostridium pasteuricnum. Arch Biochem Biophys 210: 246–256
Michalski WP, Nicholas DJD (1987) Inhibition of nitrogenase by nitrite and nitric oxide in Rhodopseudomonas sphaeroides f. sp. denitrificans. Arch Microbiol 147: 304–308
Miller DJ, Wood PM (1983) The soluble cytochrome oxidase of Nitrosomonas europaea. J Gen Microbiol 129: 1645–1650
Minagawa N, Zumft WG (1988) Cadmium-copper antagonism in the activation of periplasmic nitrous oxide reductase of copper-deficient cells from Pseudomonas stutzeri. Biol Metals 1: 117–122
Miyata M, Matsubara T, Mori T (1969) Studies on denitrification. XI. Some properties of nitric oxide reductase. J Biochem 66: 759–765
Moncada S (1992) The 1991 Ulf von Euler Lecture. The l-arginine: nitric oxide pathway. Acta Physiol Scand 145: 201–227
Moriguchi M, Manning LR, Manning JM (1992) Nitric oxide can modify amino acid residucs in proteins. Biochem Biophys Res Commun 183: 598–604
Mülsch A, Vanin A, Mordvintcev P, Hauschildt S, Busse R (1992) NO accounts completely for the oxygenated nitrogen species generated by enzymic l-arginine oxygenation. Biochem J 288: 597–603
Nakahara K, Tanimoto T, Hatano K, Usuda K, Shoun H (1993) Cytochrome P-450 55A1 (P-450dNIR) acts as nitric oxide reductase employing NADH as the direct electron donor. J Biol Chem 268: 8350–8355
Nathan C (1992) Nitric oxide as a secretory product of mammalian cells. FASEB J 6: 3051–3064
Nathan CF, Hibbs JB (1991) Role of nitric oxide synthesis in macrophage antimicrobial activity. Curr Opin Immunol 3: 65–70
Page MD, Ferguson SJ (1989) A bacterial c-type cytochrome can be translocated to the periplasm as an apoform: the biosynthesis of cytochrome cd 1 (nitrite reductase) from Paracoccus denitrificans. Mol Microbiol 3: 653–661
Palmer RMJ, Ferrige AG, Moncada S (1987) Nitric oxide relase accounts for the biological activity of endothelium-derived relaxing factor. Nature 327: 524–526
Park J, Rikihisa Y (1992) l-Arginine-dependent killing of intracellular Ehrlichia risticii by macrophages treated with gammainterferon. Infect Immun 60: 3504–3508
Payne WJ, Riley PS, CoxJr CD (1971) Separate nitrite, nitric oxide, and nitrous oxide reducing fractions from Pseudomonas perfectomarinus. J Bacteriol 106: 356–361
Pichinoty F, Mandel M, Garcia J-L (1979) The properties of novel mesophilic denitrifying Bacillus cultures found in tropical soils. J Gen Microbiol 115: 419–430
Poth M, Focht DD (1985) 15N kinetic analysis of N2O production by Nitrosomonas europaea: an examination of nitrifier denitrification. Appl Environ Microbiol 49: 1134–1141
Radi R, Beckman JS, Bush KM, Freeman BA (1991) Peroxynitrite oxidation of sulfhydryls. The cytotoxic potential of superoxide and nitric oxide. J Biol Chem 266: 4244–4250
Ralt D, Wishnok JS, Fitts R, Tannenbaum SR (1988) Bacterial catalysis of nitrosation: involvement of the nar operon of Escherichia coli. J Bacteriol 170: 359–364
Remde A, Conrad R (1991a) Metabolism of nitric oxide in soil and denitrifying bacteria. FEMS Microbiol Ecol 85: 81–93
Remde A, Conrad R (1991 b) Production of nitric oxide in Nitrosomonas europaea by reduction of nitrite. Arch Microbiol 154: 187–191
St. John RT, Hollocher TC (1977) Nitrogen 15 tracer studies on the pathway of denitrification in Pseudomonas aeruginosa. J Biol Chem 252: 212–218
Satoh T (1984) Inhibition of electron transfer through the cytochrome b-c 1 complex by nitric oxide in a photodenitrifier, Rhodopseudomonas sphaeroides forma sp. denitrificans. Arch Microbiol 139: 179–183
Sawada E, Satoh T (1980) Periplasmic location of dissimilatory nitrate and nitrite reductases in a denitrifying phototrophic bacterium Rhodopseudomonas sphaeroides forma sp. denitrificans. Plant Cell Physiol 21: 205–210
Schäfer F, Conrad R (1993) Metabolism of nitric oxide by Pseudomonas stutzeri in culture and in soil. FEMS Microbiol Ecol 102: 119–127
Shank JL, Silliker JH, Harper RH (1962) The effect of nitric oxide on bacteria. Appl Environ Microbiol 10: 185–189
Shapleigh JP, Payne WJ (1985) Nitric oxide-dependent proton translocation in various denitrifiers. J Bacteriol 163: 837–840
Shapleigh JP, Davies KJP, Payne WJ (1987) Detergent inhibition of nitric-oxide reductase activity. Biochim Biophys Acta 911: 334–340
Shearer G, Kohl DH (1988) Nitrogen isotopic fractionation and 18O exchange in relation to the mechanism of denitrification of nitrite by Pseudomonas stutzeri. J Biol Chem 263: 13 231–13 245
Shoun H, Tanimoto T (1991) Denitrification by the fungus Fusarium oxysporum and involvement of cytochrome P-450 in the respiratory nitrite reduction. J Biol Chem 266: 11 078–11 082
Shoun H, Kim D-H, Uchiyama H, Sugiyama J (1992) Denitrification by fungi. FEMS Microbiol Lett 94: 277–281
Silvestrini MC, Galeotti CL, Gervais M, Schininà E, Barra D, Bossa F, Brunori M (1989) Nitrite reductase from Pseudomonas aeruginosa: sequence of the gene and the protein. FEBS Lett 254: 33–38
Silvestrini MC, Tordi MG, Musci G, Brunori M (1990) The reaction of Pseudomonas nitrite reductase and nitrite. A stopped-flow and EPR study. J Biol Chem 265: 11 783–11 787
Smith GB, Tiedje JM (1992) Isolation and characterization of a nitrite reductase gene and its use as a probe for denitrifying bacteria. Appl Environ Microbiol 58: 376–384
Smith NA, Smith P (1992) Nitrate reduction and N-nitrosation by Obesumbacterium proteus. Lett Appl Microbiol 14: 61–64
Stamler JS, Jaraki O, Osborne J, Simon DI, Keaney J, Vita J, Singel D, Valeri CR, Loscalzo J (1992a) Nitric oxide circulates in mammalian plasma primarily as an S-nitroso adduct of serum albumin. Proc Natl Acad Sci USA 89: 7674–7677
Stamler JS, Simon DI, Osborne JA, Mullins ME, Jaraki O, Michel T, Singel DJ, Loscalzo J (1992b) S-Nitrosylation of proteins with nitric oxide: synthesis and characterization of biologically active compounds. Proc Natl Acad Sci USA 89: 444–448
Stamler JS, Singel DJ, Loscalzo J (1992c) Biochemistry of nitric oxide and its redox-activated forms. Science 258: 1898–1902
Stouthamer AH (1988) Dissimilatory reduction of oxidized nitrogen compounds. In: Zehnder AJB (ed) Biology of anaerobic microorganisms. Wiley, New York, pp 245–303
Stuehr DJ, Marletta MA (1985) Mammalian nitrate biosynthesis: mouse macrophages produce nitrite and nitrate in response to Escherichia coli lipopolysaccharide. Proc Natl Acad Sci USA 82: 7738–7742
Stüven R, Vollmer M, Bock E (1992) The impact of organic matter on nitric oxide formation by Nitrosomonas europaea. Arch Microbiol 158: 439–443
Summersgill JT, Powell LA, Buster BL, Miller RD, Ramirez JA (1992) Killing of Legionella pneumophila by nitric oxide in γ-interferon-activated macrophages. J Leukoc Biol 52: 625–629
Tao Y, Howlett A, Klein C (1992) Nitric oxide-releasing compounds inhibit Dictyostelium discoideum aggregation without altering cGMP production. FEBS Lett 314: 49–52
Teraguchi S, Hollocher TC (1989) Purification and some characteristics of a cytochrome c-containing nitroux oxide reductase from Wolinella succinogenes. J Biol Chem 264: 1972–1979
Tobias JW, Shrader TE, Rocap G, Varshavsky A (1991) The N-end rule in bacteria. Science 254: 1374–1377
Traylor TG, Sharma VS (1992) Why NO? Biochemistry 31: 2847–2849
Urata K, Satoh T (1984) Evidence for cytochrome bc 1 complex involvement in nitrite reduction in a photodenitrifier, Rhodopseudomonas sphaeroides forma sp. denitrificans. FEBS Lett 172: 205–208
Urata K, Satoh T (1991) Enzyme localization and orientation of the active site of dissimilatory nitrite reductase from Bacillus firmus. Arch Microbiol 156: 24–27
Vaughn SA, Burgess BK (1989) Nitrite, a new substrate for nitrogenase. Biochemistry 28: 419–424
Voßwinkel R, Neidt I, Bothe H (1991) The production and utilization of nitric oxide by a new, denitrifying strain of Pseudomonas aeruginosa. Arch Microbiol 156: 62–69
Weeg-Aerssens E, Tiedje JM, Averill BA (1988) Evidence from isotope labeling studies for a sequential mechanism for dissimilatory nitrite reduction. J Am Chem Soc 110: 6851–6856
White KA, Marletta MA (1992) Nitric oxide synthase is a cytochrome P-450 type hemoprotein. Biochemistry 31: 6627–6631
Wijler J, Delwiche CC (1954) Investigation on the denitrifying process in soil. Plant Soil 5: 155–169
Wink DA, Kasprzak KS, Maragos CM, Elespuru RK, Misra M, Dunams TM, Cebula TA, Koch WH, Andrews AW, Allen JS, Keefer LK (1991) DNA deaminating ability and genotoxicity of nitric oxide and its progenitors. Science 254: 1001–1003
Wink DA, Darbyshire JF, Nims RW, Saavedra JE, Ford PC (1993) Reactions of the bioregulatory agent nitric oxide in oxygenated aqueous media: determination of the kinetics for oxidation and nitrosation by intermediates generated in the NO/O2 reaction. Chem Res Toxicol 6: 23–27
Wood PM (1978) Periplasmic location of the terminal reductase in nitrite respiration. FEBS Lett 92: 214–218
Wu W, Chang CK (1987) Structure of “dioneheme”. Total synthesis of the green heme prosthetic group in cytochrome cd 1 dissimilatory nitrite reductase. J Am Chem Soc 109: 3149–3150
Yamanaka T, Ota A, Okunuki K (1960) Nitrite reductase activity of Pseudomonas cytochrome oxidase. Biochim Biophys Acta 44: 397–398
Ye RW, Toro-Suarez I, Tiedje JM, Averill BA (1991) H2 18O isotope exchange studies on the mechanism of reduction of nitric oxide and nitrite to nitrous oxide by denitrifying bacteria. Evidence for an electrophilic nitrosyl during reduction of nitric oxide. J Biol Chem 266: 12 848–12 851
Ye RW, Arunakumari A, Averill BA, Tiedje JM (1992a) Mutants of Pseudomonas fluorescens deficient in dissimilatory nitrite reduction are also altered in nitric oxide reduction. J Bacteriol 174: 2560–2564
Ye RW, Averill BA, Tiedje JM (1992b) Characterization of Tn5 mutants deficient in dissimilatory nitrite reduction in Pseudomonas sp. strain G-179, which contains a copper nitrite reductase. J Bacteriol 174: 6653–6658
Ye RW, Fries MR, Bezborodnikov SG, Averill BA, Tiedje JM (1993) Characterization of the structural gene encoding a copper-containing nitrite reductase and homology of this gene to DNA of other denitrifiers. Appl Environ Microbiol 59: 250–254
Yoshimura T, Iwasaki H, Shidara S, Suzuki S, Nakahara A, Matsubara T (1988) Nitric oxide complex of cytochrome c′ in cells of denitrifying bacteria. J Biochem 103: 1016–1019
Zafiriou OC, Hanley QS, Snyder G (1989) Nitric oxide and nitrous oxide production and cycling during dissimilatory nitrite reduction by Pseudomonas perfectomarina. J Biol Chem 264: 5694–5699
Zimmermann A, Reimmann C, Galimand M, Haas D (1991) Anaerobic growth and cyanide synthesis of Pseudomonas aeruginosa depend on anr, a regulatory gene homologous with fnr of Escherichia coli. Mol Microbiol 5: 1483–1490
Zumft WG (1992) The denitrifying prokaryotes. In: Balows A, Trüper HG, Dworkin M, Harder W, Schleifer K-H (eds) The prokaryotes. A handbook on the biology of bacteria: ecophysiology, isolation, identification, application, 2nd edn, vol 1. Springer, New York Berlin Heidelberg, pp 554–582
Zumft WG, Cárdenas J (1979) The inorganic biochemistry of nitrogen. Bioenergetic processes. Naturwissenschaften 66: 81–88
Zumft WG, Frunzke K (1982) Discrimination of ascorbate-dependent nonenzymatic and enzymatic, membrane-bound reduction of nitric oxide in denitrifying Pseudomonas perfectomarinus. Biochim Biophys Acta 681: 459–468
Zumft WG, Vega JM (1979) Reduction of nitrite to nitrous oxide by a cytoplasmic membrane fraction from the marine denitrifier Pseudomonas perfectomarinus. Biochim Biophys Acta 548: 484–499
Zumft WG, Gotzmann DJ, Frunzke K, Viebrock A (1987a) Novel terminal oxidoreductases of anaerobic respiration (denitrification) from Pseudomonas. In: Ullrich WR, Aparicio PJ, Syrett PJ, Castillo F (eds) Inorganic nitrogen metabolism. Springer, Berlin Heidelberg New York, pp 61–67
Zumft WG, Gotzmann DJ, Kroneck PMH (1987b) Type 1, blue copper proteins constitute a respiratory nitrite-reducing system in Pseudomonas aureofaciens. Eur J Biochem 168: 301–307
Zumft WG, Döhler K, Körner H, Löchelt S, Viebrock A, Frunzke K (1988) Defects in cytochrome cd 1-dependent nitrite respiration of transposon Tn5-induced mutants from Pseudomonas stutzeri. Arch Microbiol 149: 492–498
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Zumft, W.G. The biological role of nitric oxide in bacteria. Arch. Microbiol. 160, 253–264 (1993). https://doi.org/10.1007/BF00292074
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DOI: https://doi.org/10.1007/BF00292074