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  4. Benzoate-coenzyme a ligase from Thauera aromatica: an enzyme acting in anaerobic and aerobic pathways
 
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Benzoate-coenzyme a ligase from Thauera aromatica: an enzyme acting in anaerobic and aerobic pathways

Publikationstyp
Journal Article
Date Issued
2003-08-15
Sprache
English
Author(s)
Schühle, Karola  
Gescher, Johannes 
Feil, Ulrich  
Paul, Michael  
Jahn, Martina  
Schägger, Hermann  
Fuchs, Georg  
TORE-URI
http://hdl.handle.net/11420/14789
Journal
Journal of bacteriology  
Volume
185
Issue
16
Start Page
4920
End Page
4929
Citation
Journal of Bacteriology 185 (16): 4920-4929 (2003-08-15)
Publisher DOI
10.1128/JB.185.16.4920-4929.2003
Scopus ID
2-s2.0-0041559697
PubMed ID
12897012
Publisher
American Society for Microbiology
In the denitrifying member of the β-Proteobacteria Thauera aromatica, the anaerobic metabolism of aromatic acids such as benzoate or 2-aminobenzoate is initiated by the formation of the coenzyme A (CoA) thioester, benzoyl-CoA and 2-aminobenzoyl-CoA, respectively. Both aromatic substrates were transformed to the acyl-CoA intermediate by a single CoA ligase (AMP forming) that preferentially acted on benzoate. This benzoate-CoA ligase was purified and characterized as a 57-kDa monomeric protein. Based on Vmax/Km, the specificity constant for 2-aminobenzoate was 15 times lower than that for benzoate; this may be the reason for the slower growth on 2-aminobenzoate. The benzoate-CoA ligase gene was cloned and sequenced and was found not to be part of the gene cluster encoding the general benzoyl-CoA pathway of anaerobic aromatic metabolism. Rather, it was located in a cluster of genes coding for a novel aerobic benzoate oxidation pathway. In line with this finding, the same CoA ligase was induced during aerobic growth with benzoate. A deletion mutant not only was unable to grow anaerobically on benzoate or 2-aminobenzoate, but also aerobic growth on benzoate was affected. This suggests that benzoate induces a single benzoate-CoA ligase. The product of benzoate activation, benzoyl-CoA, then acts as inducer of separate anaerobic or aerobic pathways of benzoyl-CoA, depending on whether oxygen is lacking or present.
DDC Class
570: Biowissenschaften, Biologie
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