| Literature DB >> 28891949 |
Ewa Kozłowska1, Monika Dymarska2, Edyta Kostrzewa-Susłow3, Tomasz Janeczko4.
Abstract
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 such as 15β-hydroxy-17α-methyltestosterone and 6β,12β-dihydroxy-17α-methyltestosterone were also observed. In the culture of Isaria fumosorosea KCh J2, DHEA was effectively hydroxylated in the C-7 position and then oxidized to give 7-oxo-DHEA, 3β,7α- and 3β,7β-dihydroxy-17a-oxa-d-homo-androst-5-ene-17-one. We obtained 7β-OH-DHEA lactone with 82% yield during 3 days transformation of highly concentrated (5 g/L) DHEA.Entities:
Keywords: DHEA; Isaria fumosorosea; biotransformation; dehydroepiandrosterone; steroid lactones
Mesh:
Substances:
Year: 2017 PMID: 28891949 PMCID: PMC6151793 DOI: 10.3390/molecules22091511
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
13C-NMR chemical shifts of products in CDCl3.
| Atom Number | Products | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| 7α-OH-AD | 6β-OH-Adr | 6β-OH-17mT | 6β-OH-17mT a | 15β-OH-17mT | 6β,12β-OH-17mT b | 7α-OH-DHEA | 7β-OH-DHEA | 7α-OH-DHEA-Lactone | 7β-OH-DHEA-Lactone | 7-oxo-DHEA | |
| 1 | 35.40 | 36.10 | 38.36 | 38.50 | 34.11 | 36.58 | 37.07 | 37.02 | 36.84 | 36.72 | 36.60 |
| 2 | 33.89 | 34.11 | 34.39 | 35.08 | 32.87 | 33.89 | 31.39 | 31.60 | 31.32 | 31.53 | 31.25 |
| 3 | 198.83 | 200.67 | 200.53 | 198.91 | 199.71 | 199.22 | 71.25 | 71.30 | 71.20 | 71.11 | 70.44 |
| 4 | 127.03 | 127.17 | 126.55 | 126.46 | 124.07 | 125.21 | 42.06 | 41.77 | 42.02 | 41.47 | 41.99 |
| 5 | 167.25 | 166.61 | 168.38 | 169.45 | 171.20 | 168.84 | 146.64 | 143.78 | 146.29 | 144.00 | 166.27 |
| 6 | 41.01 | 72.13 | 73.25 | 73.40 | 32.78 | 71.07 | 123.67 | 125.65 | 123.43 | 125.15 | 126.06 |
| 7 | 67.01 | 38.10 | 39.05 | 40.11 | 32.22 | 37.52 | 64.37 | 72.91 | 63.44 | 72.21 | 201.20 |
| 8 | 39.37 | 30.65 | 30.70 | 31.82 | 35.94 | 29.34 | 37.32 | 40.54 | 40.24 | 43.42 | 44.47 |
| 9 | 45.31 | 63.13 | 53.77 | 55.32 | 54.32 | 51.68 | 42.72 | 48.37 | 41.76 | 48.13 | 50.22 |
| 10 | 38.55 | 37.68 | 38.22 | 39.14 | 38.95 | 38.27 | 37.63 | 36.78 | 37.54 | 36.52 | 38.54 |
| 11 | 20.15 | 207.41 | 20.78 | 21.85 | 20.70 | 29.54 | 20.19 | 20.51 | 21.70 | 22.07 | 20.72 |
| 12 | 30.98 | 50.50 | 31.54 | 32.79 | 31.47 | 71.83 | 31.18 | 31.36 | 38.53 | 39.15 | 30.85 |
| 13 | 47.31 | 50.44 | 45.60 | 46.58 | 44.89 | 48.41 | 47.23 | 47.89 | 83.50 | 83.46 | 48.00 |
| 14 | 45.64 | 49.71 | 50.29 | 51.57 | 54.77 | 49.35 | 45.05 | 51.34 | 40.15 | 47.20 | 45.88 |
| 15 | 21.25 | 21.69 | 23.30 | 24.37 | 69.16 | 22.67 | 22.02 | 24.31 | 19.86 | 21.55 | 24.31 |
| 16 | 35.71 | 36.03 | 37.29 | 39.89 | 51.97 | 38.02 | 35.91 | 36.10 | 28.86 | 29.26 | 35.77 |
| 17 | 220.41 | 217.24 | 81.73 | 80.90 | 81.40 | 80.42 | 221.30 | 221.31 | 171.83 | 171.79 | 220.52 |
| 18 | 13.49 | 14.91 | 14.11 | 14.71 | 16.67 | 8.75 | 13.39 | 13.70 | 20.08 | 20.38 | 13.89 |
| 19 | 17.01 | 19.32 | 19.68 | 19.94 | 17.47 | 18.86 | 18.38 | 19.29 | 18.33 | 19.07 | 17.57 |
| 20 | 25.91 | 26.64 | 25.41 | 25.83 | |||||||
a Compound 6β-OH-mT in THF-d8; b Compound 6β,12β-mT in DMSO-d6.
Scheme 1Transformation of androstenedione in Isaria fumosorosea KCh J2 culture.
Product accumulation during transformation in Isaria fumosorosea KCh J2 culture.
| Substrate | Compounds Found in the Reaction Mixture (%) | Biotransformation Time (Days) | ||
|---|---|---|---|---|
| 1 | 3 | 7 | ||
| Androstenedione | AD | - | - | - |
| 7α-OH-AD | 76 | 71 | 64 | |
| Adrenosterone | Adr | 38 | 28 | 11 |
| 6β-OH-Adr | 57 | 67 | 84 | |
| 17α-Methyltestosterone | 17mT | - | - | - |
| 6β-OH-17mT | 76 | 49 | 20 | |
| 15β-OH-17mT | 11 | 9 | 8 | |
| 6β,12β-OH-17mT | 4 | 67 | 84 | |
Scheme 2Hydroxylation of adrenosterone by Isaria fumosorosea KCh J2 strain.
Scheme 3Transformation of 17α-methyltestosterone in Isaria fumosorosea KCh J2 culture.
Compositions of crude mixtures obtained in transformations of different amounts of DHEA.
| Concentration of Substrate (g/L) | Compounds Found in the Reaction Mixture (%) | Biotransformation Time (h) | ||||
|---|---|---|---|---|---|---|
| 3 | 12 | 24 | 72 | 168 | ||
| 0.1 | DHEA | 7 | - | - | - | - |
| 7α-OH-DHEA | 15 | 2 | - | - | - | |
| 7β-OH-DHEA | 75 | 34 | 18 | 8 | - | |
| 7-oxo-DHEA | 2 | 9 | 6 | - | - | |
| 7α-OH-DHEA lactone | - | 13 | 20 | 22 | 22 | |
| 7β-OH-DHEA lactone | - | 41 | 52 | 60 | 58 | |
| 0.5 | DHEA | 74 | 2 | - | - | - |
| 7α-OH-DHEA | 5 | 1 | - | - | - | |
| 7β-OH-DHEA | 21 | 16 | - | - | - | |
| 7-oxo-DHEA | - | 1 | - | - | - | |
| 7α-OH-DHEA lactone | - | 15 | 18 | 17 | 8 | |
| 7β-OH-DHEA lactone | - | 62 | 76 | 72 | 74 | |
| 1.0 | DHEA | 75 | 1 | - | - | - |
| 7α-OH-DHEA | 5 | 2 | - | - | - | |
| 7β-OH-DHEA | 20 | 36 | - | - | - | |
| 7-oxo-DHEA | - | 2 | - | - | - | |
| 7α-OH-DHEA lactone | - | 12 | 19 | 20 | 15 | |
| 7β-OH-DHEA lactone | - | 45 | 76 | 70 | 66 | |
| 2.0 | DHEA | 89 | 8 | - | - | - |
| 7α-OH-DHEA | 2 | 7 | - | - | - | |
| 7β-OH-DHEA | 9 | 58 | 2 | - | - | |
| 7-oxo-DHEA | - | 4 | - | - | - | |
| 7α-OH-DHEA lactone | - | 1 | 16 | 14 | 12 | |
| 7β-OH-DHEA lactone | - | 20 | 78 | 78 | 79 | |
| 5.0 | DHEA | 96 | 56 | 26 | - | - |
| 7α-OH-DHEA | 1 | 5 | 6 | - | - | |
| 7β-OH-DHEA | 3 | 33 | 37 | - | - | |
| 7-oxo-DHEA | - | 1 | 3 | - | - | |
| 7α-OH-DHEA lactone | - | - | 2 | 12 | 11 | |
| 7β-OH-DHEA lactone | - | 4 | 23 | 81 | 75 | |
Scheme 4Putative transformation of DHEA in the culture of Isaria fumosorosea KCh J2 strain.