Hydroxylation is an important route to synthesize more hydrophilic compounds of pharmaceutical significance. Microbial hydroxylation offers advantages over chemical means for its high specificity. In this study, a fungal strain Alternaria alternata AS 3.4578 was found to be able to catalyze the specific 12 beta-hydroxylation of a variety of cytotoxic bufadienolides. Cinobufagin and resibufogenin could be completely metabolized by A. alternata to generate their 12 beta-hydroxylated products in high yields (> 90%) within 8h of incubation. A. alternata could also convert 3-epi-desacetylcinobufagin into 3-epi-12 beta-hydroxyl desacetylcinobufagin as the major product (70% yield). C-3 dehydrogenated products were detected in these reactions i...
International audienceAmong various filamentous fungi, Aspergillus niger ATCC 9142 was the most effi...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
Biotransformation of natural products has great potential for producing new drugs and could provide ...
Microbial transformation was used to prepare novel cytotoxic bufadienolides. Twelve products (3-14) ...
Microorganisms such as filamentous fungi are known to carry out regio- and stereoselective hydroxyla...
Twenty strains of filamentous fungi (from nine genera) and four species of bacteria were screened fo...
Microbial catalysis is a useful biotechnology in studies on natural products, by which a diversity o...
2012-08-02Filamentous fungi are prolific producers of bioactive secondary metabolites. Recent genome...
Fungi are one of the most prolific sources of microbial secondary metabolites. The production of new...
An improved procedure for the microbial hydroxylations of dehydroepiandrosterone (DHEA, 1) and 15β,1...
The microbial transformation of a cytotoxic bufadienolide, bufotalin (1), was carried out. Three tra...
Fungi are talented organisms able to produce several natural products with a wide range of structura...
Fungi are talented organisms able to produce several natural products with a wide range of structura...
Two fungal strains of Beauveria bassiana, DSM 875 and DSM 1344, hydroxylated CGP 62706, an inhibitor...
International audienceAmong various filamentous fungi, Aspergillus niger ATCC 9142 was the most effi...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
Biotransformation of natural products has great potential for producing new drugs and could provide ...
Microbial transformation was used to prepare novel cytotoxic bufadienolides. Twelve products (3-14) ...
Microorganisms such as filamentous fungi are known to carry out regio- and stereoselective hydroxyla...
Twenty strains of filamentous fungi (from nine genera) and four species of bacteria were screened fo...
Microbial catalysis is a useful biotechnology in studies on natural products, by which a diversity o...
2012-08-02Filamentous fungi are prolific producers of bioactive secondary metabolites. Recent genome...
Fungi are one of the most prolific sources of microbial secondary metabolites. The production of new...
An improved procedure for the microbial hydroxylations of dehydroepiandrosterone (DHEA, 1) and 15β,1...
The microbial transformation of a cytotoxic bufadienolide, bufotalin (1), was carried out. Three tra...
Fungi are talented organisms able to produce several natural products with a wide range of structura...
Fungi are talented organisms able to produce several natural products with a wide range of structura...
Two fungal strains of Beauveria bassiana, DSM 875 and DSM 1344, hydroxylated CGP 62706, an inhibitor...
International audienceAmong various filamentous fungi, Aspergillus niger ATCC 9142 was the most effi...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...