Affiliation:
1. School of Biological Sciences, University of Wales, Bangor, Gwynedd LL57 2UW, United Kingdom
Abstract
ABSTRACT
Pseudomonas
sp. strain TW3 is able to oxidatively metabolize 4-nitrotoluene and toluene via a route analogous to the upper pathway of the TOL plasmids. We report the sequence and organization of five genes,
ntnWCMAB
*, which are very similar to and in the same order as the
xyl
operon of TOL plasmid pWW0 and present evidence that they encode enzymes which are expressed during growth on both 4-nitrotoluene and toluene and are responsible for their oxidation to 4-nitrobenzoate and benzoate, respectively. These genes encode an alcohol dehydrogenase homolog (
ntnW
), an NAD
+
-linked benzaldehyde dehydrogenase (
ntnC
), a two-gene toluene monooxygenase (
ntnMA
), and part of a benzyl alcohol dehydrogenase (
ntnB
*), which have 84 to 99% identity at the nucleotide and amino acid levels with the corresponding
xylWCMAB
genes. The
xylB
homolog on the TW3 genome (
ntnB
*) appears to be a pseudogene and is interrupted by a piece of DNA which destroys its functional open reading frame, implicating an additional and as-yet-unidentified benzyl alcohol dehydrogenase gene in this pathway. This conforms with the observation that the benzyl alcohol dehydrogenase expressed during growth on 4-nitrotoluene and toluene differs significantly from the XylB protein, requiring assay via dye-linked electron transfer rather than through a nicotinamide cofactor. The further catabolism of 4-nitrobenzoate and benzoate diverges in that the former enters the hydroxylaminobenzoate pathway as previously reported, while the latter is further metabolized via the β-ketoadipate pathway.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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