| Literature DB >> 31052279 |
Qian Jia1,2, Yuqi Du3,4, Chen Wang5, Yi Wang6, Tonghan Zhu7,8, Weiming Zhu9,10.
Abstract
Four new azaphilones, sclerotiorins A-D (1-4), as well as the dimeric sclerotiorin E (5) of which we first determined its absolute configuration, and 12 known analogues (5-16) were isolated from the fermentation broth of Penicillium sclerotiorum OUCMDZ-3839 associated with a marine sponge Paratetilla sp.. The new structures, including absolute configurations, were elucidated by spectroscopic analyses, optical rotation, ECD spectra, X-ray single-crystal diffraction, and chemical transformations. Compounds 11 and 14 displayed significant inhibitory activity against α-glycosidase, with IC50 values of 17.3 and 166.1 μM, respectively. In addition, compounds 5, 7, 10, 12-14, and 16 showed moderate bioactivity against H1N1 virus.Entities:
Keywords: Paratetilla sp.; Penicillium sclerotiorum; anti-virus; anti-α-glycosidase; azaphilones
Mesh:
Substances:
Year: 2019 PMID: 31052279 PMCID: PMC6563140 DOI: 10.3390/md17050260
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of compounds 1–16.
13C (125 MHz) NMR data for compounds 1–4 (δ in ppm).
| Position | 1 a | 2 a | 3 a | 4 b |
|---|---|---|---|---|
|
|
|
|
| |
| 1 | 144.6, CH | 145.4, CH | 145.4, CH | 141.2, CH |
| 3 | 157.4, C | 157.7, C | 155.4, C | 148.3, C |
| 4 | 105.0, CH | 104.9, CH | 107.7, CH | 111.7, CH |
| 4a | 138.9, C | 139.6, C | 143.0, C | 144.9, C |
| 5 | 109.0, C | 108.4, C | 106.1, CH | 102.3, C |
| 6 | 187.7, C | 187.9, C | 195.1, C | 184.5, C |
| 7 | 83.5, C | 84.1, C | 83.1, C | 84.8, C |
| 8 | 43.4, CH | 42.7, CH | 43.2, CH | 193.9, C |
| 8a | 116.4, C | 115.7, C | 116.4, C | 115.1, C |
| 9 | 117.6, CH | 117.5, CH | 117.4, CH | 114.6, CH |
| 10 | 140.3, CH | 140.5, CH | 139.0, CH | 145.6, CH |
| 11 | 132.2, C | 132.2, C | 132.0, C | 132.2, C |
| 12 | 146.2, CH | 146.4, CH | 145.3, CH | 148.4, CH |
| 13 | 34.3, CH | 34.3, CH | 34.2, CH | 35.2, CH |
| 14 | 29.6, CH2 | 29.6, CH2 | 29.6, CH2 | 30.0, CH2 |
| 15 | 11.8, CH3 | 11.8, CH3 | 11.9, CH3 | 12.1, CH3 |
| 16 | 20.2, CH3 | 20.2, CH3 | 20.3, CH3 | 20.3, CH3 |
| 17 | 12.3, CH3 | 12.3, CH3 | 12.3, CH3 | 12.6, CH3 |
| 18 | 23.9, CH3 | 24.4, CH3 | 24.3, CH3 | 23.4, CH3 |
| 19 | 106.0, C | 105.4, C | 105.1, C | 170.3, C |
| 20 | 45.8, CH2 | 44.2, CH2 | 44.4, CH2 | 20.4, CH3 |
| 21 | 22.9, CH3 | 22.8, CH3 | 23.0, CH3 | 53.4, CH2 |
| 22 | - | - | - | 25.4, CH2 |
| 23 | - | - | - | 30.2, CH2 |
| 24 | - | - | - | 172.6, C |
| OCH3 | 48.3, CH3 | 48.3, CH3 | 48.3, CH3 | 52.2, CH3 |
a recorded in DMSO-d6. b recorded in CDCl3.
1H (500 MHz) NMR data for compounds 1–4 (δ in ppm).
| Position | 1 a | 2 a | 3a | 4 b |
|---|---|---|---|---|
| 1 | 7.65, s | 7.80, s | 7.65, s | 7.76, s |
| 4 | 6.67, s | 6.69, s | 6.40, s | 7.05, s |
| 5 | - | - | 5.23, s | - |
| 8 | 3.23, dd (10.3, 10.3) | 3.42, dd (12.7, 10.3) | 3.30, m | - |
| 9 | 6.44, d (15.8) | 6.45, d (15.8) | 6.18, d (15.8) | 6.31, d (15.3) |
| 10 | 6.99, d (15.8) | 7.01, d (15.8) | 6.90, d (15.8) | 6.98, d (15.3) |
| 12 | 5.71, d (9.7) | 5.72, d (9.6) | 5.65, d (9.7) | 5.71, d (9.7) |
| 13 | 2.46, m | 2.46, m | 2.45, m | 2.48, m |
| 14 | 1.39, m; 1.26, m | 1.39, m; 1.27, m | 1.37, m; 1.27, m | 1.44, m; 1.36, m |
| 15 | 0.81, t (7.5) | 0.81, t (7.5) | 0.81, t (7.4) | 0.88, t (7.4) |
| 16 | 0.96, d (6.6) | 0.96, d (6.6) | 0.95, d (6.6) | 1.02, d (6.6) |
| 17 | 1.80, s | 1.80, s | 1.77, s | 1.90, s |
| 18 | 1.19, s | 1.25, s | 1.20, s | 1.55, s |
| 20 | 2.36, dd (13.0,10.0) | 2.18, dd (12.7,7.3) | 2.15, dd (13.1,10.0) | 2.16, s |
| 21 | 1.35, s | 1.25, s | 1.23, s | 3.95, t (7.8) |
| 22 | - | - | - | 2.05, m |
| 23 | - | - | - | 2.43, t (6.4) |
| OCH3 | 3.03, s | 3.20, s | 3.19, s | 3.70, s |
a recorded in DMSO-d6. b recorded in CDCl3.
Figure 2Key COSY, HMBC, and Nuclear Overhauser Effect (NOE) correlations of compounds 1–4.
Figure 3Measured ECD curves of compounds 1–3.
Figure 4ORTEP (Oak Ridge Thermal-Ellipsoid Plot) drawing of compounds 14 and 15 (Mo Kα).
Scheme 1Chemical transformation of 7 to 4, 5, and 14–16. Reagents and conditions: a. NH4OAc, MeOH, THF (tetrahydrofuran), 17h, r.t (room temperature), 40.1% yield; b. 1,4-diiodobutane, K2CO3, acetone, 7d, 50 °C, 3.3% yield; c. aminobutyric acid, DMF (N,N-dimethylformamide), N2, 5h, r.t, 92.7% yield; d. CH3I, K2CO3, acetone, N2, 24h, r.t, 94.1% yield; e. aminoethanol, CH2Cl2, N2, 24h, r.t, 92.4% yield.
Activity against H1N1 of compounds 5, 7, 10, 12–14, and 16. IC50.
| Compound | 5 | 7 | 10 | 12 | 13 | 14 | 16 | Ribavirin |
|---|---|---|---|---|---|---|---|---|
| IC50 (μM) | 78.6 | 128.7 | 115.0 | 150.5 | 91.4 | 133.9 | 156.8 | 179.8 |