Anaerobic degradation of m -cresol by Desulfobacterium cetonicum is initiated by formation of 3-hydroxybenzylsuccinate
Author(s) -
Jochen A. Müller,
Alexander Galushko,
Andreas Kappler,
Bernhard Schink
Publication year - 1999
Publication title -
archives of microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.648
H-Index - 102
eISSN - 1432-072X
pISSN - 0302-8933
DOI - 10.1007/s002030050782
Subject(s) - anoxic waters , chemistry , anaerobic exercise , degradation (telecommunications) , phenol , biodegradation , metabolism , sulfate , electron acceptor , chromatography , toluene , p cresol , cresol , nuclear chemistry , environmental chemistry , biochemistry , organic chemistry , biology , physiology , telecommunications , computer science
The anaerobic bacterium Desulfobacterium cetonicum oxidized m-cresol completely with sulfate as electron acceptor. During growth, 3-hydroxybenzylsuccinate (identified by gas chromatography/mass spectroscopy and by comparison of high-performance liquid chromatography retention time and UV spectrum with a chemically synthesized reference compound) accumulated in the medium. This finding indicates that the methyl group of m-cresol is activated by addition to fumarate as in the case of anaerobic toluene metabolism. In cell-free extracts of D. cetonicum, the formation of 3-hydroxybenzylsuccinate from m-cresol and fumarate was detected at an activity of 0.5 nmol min(-1) (mg protein)(-1). This reaction depended strictly on anoxic assay conditions. Treatment with air resulted in a complete loss of activity; however, some activity could be recovered after restoring anoxic conditions. The activity was slightly membrane-associated. 3-Hydroxybenzylsuccinate was degraded via CoA thioesterification and further oxidation to 3-hydroxybenzoyl-CoA as subsequent steps in the degradation pathway.
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