Microbial hydroxylation of epiandrosterone by <i>Aspergillus candidus</i>
作者:Kudret Yildirim、Ali Kuru
DOI:10.1080/10242422.2017.1289184
日期:2017.3.4
work, Aspergillus candidus MRC 22634 converted epiandosterone 1 into 10 hydroxylated metabolites. A. candidus has been shown to hydroxylate 1 predominantly at C-11α, C-1α, and C-15β with minor hydroxylations occurring at C-14α and C-7α. Oxidation at C-3, reduction at C-17, and C-3 epimerization of some of the remaining substrate have also been shown. 15β-Hydroxylation and C-3 epimerization of 1 by
Hydroxylation of DHEA, androstenediol and epiandrosterone by Mortierella isabellina AM212. Evidence indicating that both constitutive and inducible hydroxylases catalyze 7α- as well as 7β-hydroxylations of 5-ene substrates
underwent effective hydroxylation; 5-ene substrates – DHEA and androstenediol – were transformed into a mixture of 7α- and 7β- allyl alcohols, while epiandrosterone was converted into 7α- (mainly), 11α- and 9α- monohydroxy derivatives. Ketoconazole and cycloheximide inhibition studies suggest the presence of constitutive and substrate-induced hydroxylases in M. isabellina. On the basis of time course analysis
Microbiological transformations. Part 4. Microbiological transformations of 5α-androstan-17-ones and of 17a-aza-<scp>D</scp>-homo-5α-androstan-17-ones with the fungus Cunninghamella elegans
作者:Trevor A. Crabb、John A. Saul、Roger O. Williams
DOI:10.1039/p19810001041
日期:——
The microbiologicaltransformation of 5α-androstan-17-one, and the 3β-acetoxy- and 3α-hydroxy-derivatives, by Cunninghamellaelegans is dominated by 1β,7-dihydroxylation or 7-monohydroxylation. 3α-Acetoxy-5α-androstan-17-one undergoes predominant 6β,11β-dihydroxylation. 17a-Aza-D-homo-5α-androstan-17-one and the 3α-acetoxy-derivative undergo predominant monohydroxylation at 6β or 7α, in contrast to
秀丽隐杆线虫对5α-雄甾烷17-one,3β-乙酰氧基和3α-羟基衍生物的微生物转化主要由1β,7-二羟基化或7-单羟基化。3α-乙酰氧基-5α-雄烷-17-主要发生6β,11β-二羟基化。17a- Aza- D -homo-5α-androstan-17-one和3α-乙酰氧基衍生物在6β或7α处主要发生单羟基化反应,而3β-乙酰氧基衍生物虽然进行类似的单羟基化反应却得到良好的收率。 9α-单羟基化产物。
Hydroxylation of DHEA and its analogues by Absidia coerulea AM93. Can an inducible microbial hydroxylase catalyze 7α- and 7β-hydroxylation of 5-ene and 5α-dihydro C19-steroids?
coerulea AM93. DHEA and androstenediol were transformed to the mixture of allyl 7-hydroxy derivatives, while EpiA and 5α-androstan-3,17-dione were converted mainly to 7α- and 7β-alcohols accompanied by 9α- and 11α-hydroxy derivatives. On the basis of (i) time course analysis of hydroxylation of the abovementioned substrates, (ii) biotransformation with resting cells at different pH, (iii) enzyme inhibition
Microbial Transformation of Epiandrosterone by Aspergillus Sydowii
作者:Kudret Yildirim、Ali Kuru
DOI:10.3184/174751916x14786062524888
日期:2016.12
Incubation of epiandrosterone with Aspergillus sydowii MRC 200653 afforded ten metabolites. The fungal dehydrogenation of epiandrosterone is reported for the first time. The formation of the major metabolite, 6β-hydroxyandrost-4-ene-3,17-dione, involved first dehydrogenation to give a 4-ene and then hydroxylation at C-6β. Small amounts of the substrate were hydroxylated at C-1α, C-7α, C-7β and C-11α