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Oxygenases, bacterial

Proteins from Eukaryotes that Show Homology to Bacterial Rieske-Type Oxygenases... [Pg.91]

Branchaud BP, CT Walsh (1985) Functional group diversity in enzymatic oxygenation reactions catalyzed by bacterial flavin-containing cyclohexanone oxygenase. J Amer Chem Soc 107 2153-2161. [Pg.79]

Hurtubise Y, D Barriault, M Sylvestre (1998) Involvement of the terminal oxygenase P subunit in the biphenyl dioxygenase reactivity pattern towards chlorobiphenyls. J Bacterial 180 5828-5835. [Pg.139]

Rosche B, B Tshisuaka, B Hauer, F Lingens, S Fetzner (1997) 2-Oxo-l,2-dihydroquinoline 8-monooxygen-ase phylogenetic relationship to other multicomponent nonheme iron oxygenases. J Bacterial 179 3549-3554. [Pg.144]

Sparrow LG, PPK Ho, TK Sundaram, D Zach, EJ Nyns, EE Snell (1969) The bacterial oxidation of vitamin Bg. VII. Purification, properties, and mechanism of action of an oxygenase which cleaves the 3-hydroxypyridine ring. J Biol Chem 244 2590-2660. [Pg.145]

Whited GM, DT Gibson (1991) Separation and partial characterization of the enzymes of the toluene-4-mono-oxygenase catabolic pathway in Pseudomonas mendocina KRl. J Bacterial 173 3017-3020. [Pg.147]

Zhu W, A Wilks, I Stojiljkovic (2000) Degradation of heme in Gram-negative bacteria the product of the hemO gene of Neisseriae is a heme oxygenase. J Bacterial 182 6783-6790. [Pg.147]

Larkin Ml (1988) The specificity of 1-naphthol oxygenases from three bacterial isolates, Pseudomonas spp. (NCIB 12042 and 12043) and Rhodococcus sp. (NCIB 12038) isolated from garden soil. EEMS Microbiol Lett 52 173-176. [Pg.421]

Chebrou H, Y Hurtubise, D Barriault, M Sylvestre (1999) Heterologous expression and cbaracterization of tbe pnrified oxygenase component of Rhodococcus globerulus P6 bipbenyl dioxygenase and of cbimeras derived from it. J Bacterial 181 4805-4811. [Pg.478]

Haddock ID, DT Gibson (1995) Purification and characterization of the oxygenase component of biphenyl 2,3-dioxygenase from Pseudomonas sp. strain LB400. J Bacterial 177 5834-5839. [Pg.479]

Zeyer J, HP Kocher (1988) Purification and characterization of a bacterial nitrophenol oxygenase which converts orf/io-nitrophenol to catechol and nitrite. J Bacteriol 170 1789-1794. [Pg.520]

Other biological redox processes are for instance important in the bacterial degradation of chemical products found in the soil (such as the oxygenases illustrated in Chapter 9, Section 1.1). [Pg.539]

Fig. 7.4.2 The origin and metabolism of TMA in man. This figure shows the molecular defect in the flavin-containing mono-oxygenase ( ) in trimethylaminuria or fish odour syndrome. The dashed line indicates the minor metabolic pathway in healthy volunteers. Enzyme steps marked with B are in the intestinal bacterial flora. DMA Dimethylamine, MMA monomethyl-... Fig. 7.4.2 The origin and metabolism of TMA in man. This figure shows the molecular defect in the flavin-containing mono-oxygenase ( ) in trimethylaminuria or fish odour syndrome. The dashed line indicates the minor metabolic pathway in healthy volunteers. Enzyme steps marked with B are in the intestinal bacterial flora. DMA Dimethylamine, MMA monomethyl-...

See other pages where Oxygenases, bacterial is mentioned: [Pg.86]    [Pg.86]    [Pg.89]    [Pg.90]    [Pg.227]    [Pg.682]    [Pg.108]    [Pg.310]    [Pg.22]    [Pg.166]    [Pg.212]    [Pg.213]    [Pg.214]    [Pg.165]    [Pg.212]    [Pg.200]    [Pg.131]    [Pg.170]    [Pg.34]    [Pg.176]    [Pg.400]    [Pg.155]    [Pg.262]    [Pg.699]    [Pg.1081]    [Pg.104]    [Pg.305]    [Pg.305]    [Pg.308]   
See also in sourсe #XX -- [ Pg.258 , Pg.305 , Pg.308 ]




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Oxygenases

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