| Literature DB >> 23537428 |
Elias Baydoun1, Marium Bibi, Muhammad Asif Iqbal, Atia-Tul Wahab, Dina Farran, Colon Smith, Samina A Sattar, Atta-Ur Rahman, M Iqbal Choudhary.
Abstract
BACKGROUND: Microbial transformation of steroids has been extensively used for the synthesis of steroidal drugs, that often yield novel analogues, not easy to obtain by chemical synthesis. We report here fungal transformation of a synthetic steroidal drug, exemestane, used for the treatment of breast cancer and function through inhibition of aromatase enzyme.Entities:
Year: 2013 PMID: 23537428 PMCID: PMC3637571 DOI: 10.1186/1752-153X-7-57
Source DB: PubMed Journal: Chem Cent J ISSN: 1752-153X Impact factor: 4.215
Figure 1Biotransformation of exemestane (1) with yielded metabolite 2.
Figure 2Biotransformation of exemestane (1) with yielded metabolites 3-5.
H-NMR data of compounds 1–5 in ppm, in Hz
| 7.21 d (10.0) | 7.21 d (10.5) | 7.31 d (10.2) | 7.34 d (10.5) | 7.31 d (10.2) | |
| 6.14 dd (10.5, 2.0) | 6.12 dd (10.5, 2.0) | 6.21 dd (10.2, 1.8) | 6.42, dd (10.5, 2.0) | 6.22 dd (10.2, 1.8) | |
| - | - | - | - | - | |
| 5.99, d (2.0) | 6.00 d (2.0) | 6.08 d (1.8) | 6.11 d (2.0) | 6.09 d (1.8) | |
| - | - | - | - | - | |
| - | - | - | - | - | |
| 2.69, 1.97 m | 2.13, 1.28 m | 2.56 d (9.0), 1.87 m | 2.57, 1.96 m | 2.66, 1.82 m | |
| 2.03 m | 1.98 m | 1.86 m | 1.98 m | 1.83 m | |
| 1.34 m | 1.62 m | 1.35 m | 1.48 m | 1.05 m | |
| - | - | - | - | - | |
| 1.92, 1.76 m | 4.30 m | 1.91, 1.31 m, | 1.93, 1.84 m | 1.75, 1.83 m | |
| 1.78, 1.28 m | 2.13, 1.28 m | 1.90, 1.16 m | 2.01, 1.45 m | 1.13, 1.92 m | |
| - | - | - | - | - | |
| 1.43 m | 1.37 m | 0.93 m | 1.63 m | 1.27 m | |
| 1.99, 1.67 m | 1.93, 1.80 m | 2.20, 1.30 m | 2.29, 1.95 m | 1.65, 1.38 m | |
| 2.41, 1.95 m | 2.66, 1.95 m | 4.07 m | - | 2.00, 1.51 m | |
| - | - | 3.30 d (7.5) | 3.77 s | 3.55 t (8.7) | |
| 0.92 s | 0.99 s | 0.99 s | 0.81 s | 0.81 s | |
| 1.19 s | 1.18 s | 1.18 s | 1.21 s | 1.17 s | |
| 5.03, 5.01 s | 5.04, 5.02 s | 5.02 t (1.9) | 5.06, 5.04 s | 4.99, 5.01 s | |
a 500 MHz (CD3)2CO.
b 300 MHz CD3OD.
C-NMR data of compounds 1–5 in ppm
| 155.0 | 154.9 | 158.1 | 157.6 | 158.2 | |
| 128.0 | 128.0 | 127.8 | 127.9 | 127.7 | |
| 185.8 | 185.8 | 188.7 | 188.6 | 188.7 | |
| 122.9 | 122.9 | 122.7 | 122.8 | 122.7 | |
| 167.9 | 167.9 | 171.6 | 171.2 | 171.7 | |
| 147.1 | 147.0 | 147.7 | 147.3 | 147.8 | |
| 39.87 | 32.1 | 41.4 | 41.2 | 41.3 | |
| 36.0 | 39.6 | 36.6 | 35.9 | 37.2 | |
| 50.9 | 48.6 | 51.9 | 51.4 | 51.7 | |
| 44.3 | 44.3 | 45.6 | 45.5 | 45.6 | |
| 22.63 | 71.5 | 23.0 | 23.2 | 23.6 | |
| 32.0 | 32.0 | 38.1 | 36.6 | 37.5 | |
| 48.1 | 48.1 | 43.7 | 43.5 | 44.2 | |
| 51.3 | 50.8 | 48.2 | 45.4 | 51.8 | |
| 22.3 | 22.3 | 35.9 | 36.6 | 24.3 | |
| 35.8 | 39.7 | 70.6 | 217.7 | 30.5 | |
| 218.8 | 218.0 | 81.7 | 86.8 | 82.1 | |
| 13.9 | 14.5 | 12.5 | 11.9 | 11.6 | |
| 20.1 | 20.1 | 20.1 | 20.1 | 20.1 | |
| 112.2 | 112.2 | 112.6 | 112.9 | 112.4 | |
a 125 MHz (CD3)2CO.
b 150 MHz (CD3)2CO.
c 125 MHz CD3OD.
d 75 MHz CD3OD.
cytotoxicity of compounds 1–5
| >50 | >50 | |
| 16.83±0.96 | 24.87±0.72 | |
| >50 | >50 | |
| 37.20 ± 0.88 | >50 | |
| >50 | >50 | |
Figure 3Important HMBC (a) and NOESY (b) correlations in metabolite 2.
Figure 4Important HMBC (a) and NOESY (b) correlations in metabolite 3.
Figure 5Important HMBC (a) and NOESY (b) correlations in metabolite 4.