J Zeyer, A Wasserfallen, K N Timmis
Index: Appl. Environ. Microbiol. 50(2) , 447-53, (1985)
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Moraxella sp. strain G is able to utilize as sole source of carbon and nitrogen aniline, 4-fluoroaniline, 2-chloroaniline, 3-chloroaniline, 4-chloroaniline (PCA), and 4-bromoaniline but not 4-iodoaniline, 4-methylaniline, 4-methoxyaniline, or 3,4-dichloroaniline. The generation time on PCA was 6 h. The pathway for the degradation of PCA was investigated by analysis of catabolic intermediates and enzyme activities. Mutants of strain G were isolated to enhance the accumulation of specific pathway intermediates. PCA was converted by an aniline oxygenase to 4-chlorocatechol, which in turn was degraded via a modified ortho-cleavage pathway. Synthesis of the aniline oxygenase was inducible by various anilines. This enzyme exhibited a broad substrate specificity. Its specific activity towards substituted anilines seemed to be correlated more with the size than with the electron-withdrawing effect of the substituent and was very low towards anilines having substituents larger than iodine or a methyl group. The initial enzyme of the modified ortho-cleavage pathway, catechol 1,2-dioxygenase, had similar characteristics to those of corresponding enzymes of pathways for the degradation of chlorobenzoic acid and chlorophenol, that is, a broad substrate specificity and high activity towards chlorinated and methylated catechols.
| Structure | Name/CAS No. | Molecular Formula | Articles | 
|---|---|---|---|
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                    4-Bromoaniline
                     CAS:106-40-1  | 
                    C6H6BrN | 
| 
                                
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                                Spectrophotometric determination of carnosine, anserine, and...
                                 1980-11-01 [Anal. Biochem. 108(2) , 303-5, (1980)]  | 
                        
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                                 2003-01-01 [Rapid Commun. Mass Spectrom. 17(1) , 76-80, (2003)]  | 
                        
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