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Formation of glucoside conjugates during biotransformation of dibenzofuran by Penicillium canescens SBUG-M 1139
Authors:E. Hammer  L. Schoefer  A. Schäfer  K. Hundt  F. Schauer
Affiliation:Institut für Mikrobiologie, Ernst-Moritz-Arndt-Universit?t Greifswald, F.-L.-Jahn-Strasse 15, 17487 Greifswald, Germany,
Deutsches Institut für Ern?hrungsforschung, Artur-Scheunert-Allee 114-116, 14558 Potsdam-Rehbrücke, Germany,
Plasma Select, Robert-Koch-Strasse 1, 17166 Teterow, Germany,
Abstract:Penicillium canescens oxidises dibenzofuran (DBF) to produce monohydroxylated derivatives and other more hydrophilic metabolites. These substances are water-soluble but unstable in organic solvents such as ethyl acetate, acetone or dichloromethane. Both extraction with ethyl acetate and enzymatic treatment of the aqueous culture filtrate with beta-glucuronidase led to decay of the hydrophilic metabolites and indicated these products to be glycoside conjugates. The glycosyl residue was identified as glucose both by liquid chromatography and by the use of glucose oxidase. The conjugate pattern formed was the same in type and amount, independent of the carbon source used for cultivation of the fungus. Clearly, DBF transformation in P canescens occurred in two phases: first the conversion to 2-, 3-, and 4-hydroxydibenzofuran (phase I), followed by the formation of the corresponding glucosyl conjugates (phase II). In contrast, 2,3-dihydroxydibenzofuran added to the cultures was transformed by ring cleavage producing a muconic acid-like dead-end product.
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