A series of 3α,5-cycloandrostane analogues with a range of functionality (6α and 6β alcohols and ketone) at carbon 6 were tested in the endogenous lactonization pathway in Aspergillus tamarii KITA. This metabolic route converts progesterone to testololactone in high yield through a four step enzymatic pathway. To date, no studies have looked at the effect of steroids devoid of polar functionality at carbon 3 and their subsequent metabolic fate by fungi which contain Baeyer–Villiger monooxygenases. Incubation of all of the cycloandrostane analogues resulted in lactonization of ring-D irrespective of C-6 stereochemistry or absence of C-3 functionality. Presence of 6β-hydroxy group and the C-17 ketone was required in order for these analogues ...
A set of five fungal species, Botrytis cinerea, Trichoderma viride and Eutypa lata, and the endophyt...
Summary Seventeen species of fungi belonging to thirteen genera were screened for the ability to car...
The biotransformation of dehydroepiandrosterone, progesterone and pregnenolone by Aspergillus candid...
A range of cortical steroids have been transformed by the fungus Aspergillus tamarii, which has the ...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
Four isomers of 5α-androstan-3,17-diol have been transformed by the filamentous fungus Aspergillus t...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
The fungus Corynespora cassiicola metabolises exogenous steroids in a unique and highly specific man...
Abstract Background Metabolic activities of microorganisms to modify the chemical structures of orga...
The research on the synthesis of steroids and its derivatives is of high interest due to their clini...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
Corynespora cassiicola has a unique but unexplored ability amongst fungi, in that it can hydroxylate...
A set of five fungal species, Botrytis cinerea, Trichoderma viride and Eutypa lata, and the endophyt...
Summary Seventeen species of fungi belonging to thirteen genera were screened for the ability to car...
The biotransformation of dehydroepiandrosterone, progesterone and pregnenolone by Aspergillus candid...
A range of cortical steroids have been transformed by the fungus Aspergillus tamarii, which has the ...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
The fungus Aspergillus tamarii transforms progesterone to testololactone in high yield through a fle...
Four isomers of 5α-androstan-3,17-diol have been transformed by the filamentous fungus Aspergillus t...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
The fungus Corynespora cassiicola metabolises exogenous steroids in a unique and highly specific man...
Abstract Background Metabolic activities of microorganisms to modify the chemical structures of orga...
The research on the synthesis of steroids and its derivatives is of high interest due to their clini...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
Corynespora cassiicola has a unique but unexplored ability amongst fungi, in that it can hydroxylate...
A set of five fungal species, Botrytis cinerea, Trichoderma viride and Eutypa lata, and the endophyt...
Summary Seventeen species of fungi belonging to thirteen genera were screened for the ability to car...
The biotransformation of dehydroepiandrosterone, progesterone and pregnenolone by Aspergillus candid...