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1.
Appl Environ Microbiol ; 70(5): 2854-60, 2004 May.
Artigo em Inglês | MEDLINE | ID: mdl-15128543

RESUMO

Two hydrogenation reactions in the initial steps of degradation of 2,4,6-trinitrophenol produce the dihydride Meisenheimer complex of 2,4,6-trinitrophenol. The npdH gene (contained in the npd gene cluster of the 2,4,6-trinitrophenol-degrading strain Rhodococcus opacus HL PM-1) was shown here to encode a tautomerase, catalyzing a proton shift between the aci-nitro and the nitro forms of the dihydride Meisenheimer complex of 2,4,6-trinitrophenol. An enzyme (which eliminated nitrite from the aci-nitro form but not the nitro form of the dihydride complex of 2,4,6-trinitrophenol) was purified from the 2,4,6-trinitrophenol-degrading strain Nocardioides simplex FJ2-1A. The product of nitrite release was the hydride Meisenheimer complex of 2,4-dinitrophenol, which was hydrogenated to the dihydride Meisenheimer complex of 2,4-dinitrophenol by the hydride transferase I and the NADPH-dependent F(420) reductase from strain HL PM-1. At pH 7.5, the dihydride complex of 2,4-dinitrophenol is protonated to 2,4-dinitrocyclohexanone. A hydrolase was purified from strain FJ2-1A and shown to cleave 2,4-dinitrocyclohexanone hydrolytically to 4,6-dinitrohexanoate.


Assuntos
Actinomycetales/enzimologia , Hidrolases/metabolismo , Nitritos/metabolismo , Picratos/metabolismo , Rhodococcus/enzimologia , 2,4-Dinitrofenol/metabolismo , Actinomycetales/metabolismo , Sequência de Aminoácidos , Proteínas de Bactérias/química , Proteínas de Bactérias/metabolismo , Biodegradação Ambiental , Hidrolases/química , Espectroscopia de Ressonância Magnética , Dados de Sequência Molecular , Picratos/química , Rhodococcus/metabolismo
2.
Microbiology (Reading) ; 148(Pt 3): 799-806, 2002 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-11882715

RESUMO

Rhodococcus (opacus) erythropolis HL PM-1 grows on 2,4,6-trinitrophenol (picric acid) or 2,4-dinitrophenol (2,4-DNP) as sole nitrogen source. A gene cluster involved in picric acid degradation was recently identified. The functional assignment of three of its genes, npdC, npdG and npdI, and the tentative functional assignment of a fourth one, npdH, is reported. The genes were expressed in Escherichia coli as His-tag fusion proteins that were purified by Ni-affinity chromatography. The enzyme activity of each protein was determined by spectrophotometry and HPLC analyses. NpdI, a hydride transferase, catalyses a hydride transfer from reduced F420 to the aromatic ring of picric acid, generating the hydride sigma-complex (hydride Meisenheimer complex) of picric acid (H(-)-PA). Similarly, NpdI also transformed 2,4-DNP to the hydride sigma-complex of 2,4-DNP. A second hydride transferase, NpdC catalysed a subsequent hydride transfer to H(-)-PA, to produce a dihydride sigma-complex of picric acid (2H(-)-PA). All three reactions required the activity of NpdG, an NADPH-dependent F420 reductase, for shuttling the hydride ions from NADPH to F420. NpdH converted 2H(-)-PA to a hitherto unknown product, X. The results show that npdC, npdG and npdI play a key role in the initial steps of picric acid degradation, and that npdH may prove to be important in the later stages.


Assuntos
Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Oxirredutases/genética , Oxirredutases/metabolismo , Picratos/metabolismo , Rhodococcus/enzimologia , Dados de Sequência Molecular , NADH NADPH Oxirredutases/genética , NADH NADPH Oxirredutases/metabolismo , Rhodococcus/genética , Transferases/genética , Transferases/metabolismo
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