Corynespora cassiicola has a unique but unexplored ability amongst fungi, in that it can hydroxylate 17α-hydroxyprogesterone at the highly hindered C-8 position of the steroid nucleus. In order to gain greater understanding of the mechanistic basis and capability of the 8β-hydroxylase we have transformed a range of structurally diverse androgens and progestogens with this organism. This has revealed that both steroid types can be hydroxylated at the 8β-position. The collective data has demonstrated the first time that 8β-hydroxylation occurs through inverted binding within a 9α-hydroxylase of the fungus. In the case of the progestogens, for this to occur, the presence of 17α-oxygen functionality (alcohol or epoxide) was essential. Remarkabl...
CYP154C5 from Nocardia farcinica is a P450 monooxygenase able to hydroxylate a range of steroids wit...
A versatile fungus isolated in our laboratory and identified as Mucor piriformis has been shown to e...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
The fungus Corynespora cassiicola metabolises exogenous steroids in a unique and highly specific man...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
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 transforms progesterone to testololactone in high yield through a fle...
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...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
Fungal metabolism of halogenated and related steroids was investigated. The fungi Aspergillus niger...
CYP154C5 from Nocardia farcinica is a P450 monooxygenase able to hydroxylate a range of steroids wit...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
CYP154C5 from Nocardia farcinica is a P450 monooxygenase able to hydroxylate a range of steroids wit...
A versatile fungus isolated in our laboratory and identified as Mucor piriformis has been shown to e...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...
The fungus Corynespora cassiicola metabolises exogenous steroids in a unique and highly specific man...
The fungus Aspergillus tamarii metabolizes progesterone to testololactone in high yield through a se...
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 transforms progesterone to testololactone in high yield through a fle...
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...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
Fungal metabolism of halogenated and related steroids was investigated. The fungi Aspergillus niger...
CYP154C5 from Nocardia farcinica is a P450 monooxygenase able to hydroxylate a range of steroids wit...
The fungus Aspergillus tamarii transforms progesterone 1 into testololactone 5 in high yield through...
CYP154C5 from Nocardia farcinica is a P450 monooxygenase able to hydroxylate a range of steroids wit...
A versatile fungus isolated in our laboratory and identified as Mucor piriformis has been shown to e...
The biotransformation of androsterone (1), epiandrosterone (2), androstanedione (3) and DHEA (dehydr...