The catalytic activity of enzymes produced by an entomopathogenic filamentous fungus (Isaria fumosorosea KCh J2) towards selected steroid compounds (androstenedione, adrenosterone, progesterone, 17α-methyltestosterone and dehydroepiandrosterone) was investigated. All tested substrates were efficiently transformed. The structure of the substrate has a crucial impact on regio- and stereoselectivity of hydroxylation since it affects binding to the active site of the enzyme. Androstenedione was hydroxylated in the 7α-position to give a key intermediate in the synthesis of the diuretic-7α-hydroxyandrost-4-ene-3,17-dione with 82% conversion. Adrenosterone and 17α-methyltestosterone were hydroxylated in the 6β-position. Hydroxylated derivatives su...
This paper demonstrates for the first time transformation of a series of steroids (progesterone, and...
carbon atoms – are important enzymes for the synthesis of valuable intermediates in the production o...
Fig. 1. AD and ADD structural modifications catalyzed by selected filamentous fungi: 1, 7β-hydroxyla...
The catalytic activity of enzymes produced by an entomopathogenic filamentous fungus (Isaria fumosor...
Abstract Background Steroid compounds are very interesting substrates for biotransformation due to t...
Progesterone biotransformation is worth studying because of the high industrial value of its derivat...
Summary Seventeen species of fungi belonging to thirteen genera were screened for the ability to car...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
The research on the synthesis of steroids and its derivatives is of high interest due to their clini...
Four isomers of 5α-androstan-3,17-diol have been transformed by the filamentous fungus Aspergillus t...
An improved procedure for the microbial hydroxylations of dehydroepiandrosterone (DHEA, 1) and 15β,1...
Corynespora cassiicola has a unique but unexplored ability amongst fungi, in that it can hydroxylate...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
A range of cortical steroids have been transformed by the fungusAspergillus tamarii, which has the a...
This paper demonstrates for the first time transformation of a series of steroids (progesterone, and...
This paper demonstrates for the first time transformation of a series of steroids (progesterone, and...
carbon atoms – are important enzymes for the synthesis of valuable intermediates in the production o...
Fig. 1. AD and ADD structural modifications catalyzed by selected filamentous fungi: 1, 7β-hydroxyla...
The catalytic activity of enzymes produced by an entomopathogenic filamentous fungus (Isaria fumosor...
Abstract Background Steroid compounds are very interesting substrates for biotransformation due to t...
Progesterone biotransformation is worth studying because of the high industrial value of its derivat...
Summary Seventeen species of fungi belonging to thirteen genera were screened for the ability to car...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
The research on the synthesis of steroids and its derivatives is of high interest due to their clini...
Four isomers of 5α-androstan-3,17-diol have been transformed by the filamentous fungus Aspergillus t...
An improved procedure for the microbial hydroxylations of dehydroepiandrosterone (DHEA, 1) and 15β,1...
Corynespora cassiicola has a unique but unexplored ability amongst fungi, in that it can hydroxylate...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
A range of cortical steroids have been transformed by the fungusAspergillus tamarii, which has the a...
This paper demonstrates for the first time transformation of a series of steroids (progesterone, and...
This paper demonstrates for the first time transformation of a series of steroids (progesterone, and...
carbon atoms – are important enzymes for the synthesis of valuable intermediates in the production o...
Fig. 1. AD and ADD structural modifications catalyzed by selected filamentous fungi: 1, 7β-hydroxyla...