| Literature DB >> 26840293 |
Mahmoud Fahmi Elsebai1, Hazem A Ghabbour2,3, Mohamed Mehiri4.
Abstract
The new phenalenone metabolites 1, 2, 4, and 6 were isolated from the marine-derived endophytic fungus Coniothyrium cereale, in addition to the ergostane-type sterol (3) and entatrovenetinone (5). Compounds 1 and 2 represent two unusual nitrogen-containing compounds, which are composed of a sterol portion condensed via two bonds to phenalenone derivatives. Compound 6, which contains unprecedented imine functionality between two carbonyl groups to form a oxepane -imine-dione ring, exhibited a moderate cytotoxicity against K562, U266, and SKM1 cancer cell lines. Moreover, molecular docking studies were done on estrogen receptor α-ligand binding domain (ERα-LBD) to compounds 1 and 2 to correlate with binding energies and affinities calculated from molecular docking to the anti-proliferative activity.Entities:
Keywords: Coniothyrium cereale; S-dehydroazasirosterol; conio-azasterol; endophytic fungal phenalenones; marine natural products; molecular docking
Mesh:
Substances:
Year: 2016 PMID: 26840293 PMCID: PMC6273853 DOI: 10.3390/molecules21020178
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of the secondary metabolites 1–6 isolated from Coniothyrium cereale.
Figure 2Significant 1H-13C HMBC correlations (arrows, proton to carbon) and 1H-1H COSY (bold lines) of compound 1.
NMR (CDCl3) spectroscopic data for conio-azasterol (1).
| No. | Mult. | δ | δ | No. | Mult. | δ | δ |
|---|---|---|---|---|---|---|---|
| 1 | CH | 97.4 | 6.38, s | 4′ | CH2 | 37.0 | a: 1.52, m |
| 2 | C | 173.9 | 5′ | C | 55.5 | ||
| 3 | C | 104.4 | 6′ | CH | 75.8 | 4.85, brs | |
| 4 | C | 120.6 | 7′ | CH | 116.9 | 5.00, brs | |
| 5 | C | 174.4 | 8′ | C | 139.0 | ||
| 6 | C | 124.2 | 9′ | C | 140.6 | ||
| 7 | C | 141.5 | 10′ | C | 40.2 | ||
| 8 | C | 104.2 | 11′ | CH | 124.9 | 5.68, brd (5.5) | |
| 9 | C | 157.9 | 12′ | CH2 | 41.9 | a: 2.12, m | |
| 10 | CH | 117.5 | 6.81, s | 13′ | C | 42.4 | |
| 11 | C | 143.0 | 14′ | CH | 50.9 | 2.07, m | |
| 12 | CH3 | 25.9 | 2.78, s | 15′ | CH2 | 22.9 | 1.53, m |
| 13 | C | 112.5 | 16′ | CH2 | 28.6 | 1.60, m | |
| 14 | C | 167.3 | 17′ | CH | 55.7 | 1.20, m | |
| 18 | CH3 | 18.3 | 1.76, s | 18′ | CH3 | 11.6 | 0.50, s |
| 19 | CH3 | 25.8 | 1.81, s | 19′ | CH3 | 23.6 | 1.23, s |
| 20 | CH2 | 66.0 | 4.69, d (6.2) | 20′ | CH | 40.3 | 1.95, m |
| 21 | CH | 118.4 | 5.56, brt (6.2) | 21′ | CH3 | 20.7 | 0.96, d (6.3) |
| 22 | C | 139.0 | 22′ | CH | 135.2 | 5.07, dd (7.7, 15.0) | |
| 2-OH | 16.91, s | 23′ | CH | 132.2 | 5.17, dd (7.3, 15.0) | ||
| 9-OH | 9.69, s | 24′ | CH | 42.8 | 1.78, m | ||
| NH | 3.93, s | 25′ | CH | 33.0 | 1.40, m | ||
| 1′ | CH2 | 29.7 | 1.98, m | 26′ | CH3 | 19.6 | 0.76, d (6.3) |
| 2′ | CH2 | 30.2 | 1.66, m | 27′ | CH3 | 19.9 | 0.78, d (6.3) |
| 3′ | CH | 66.7 | 4.10, m | 28′ | CH3 | 17.6 | 0.85, d (6.3) |
NMR (CDCl3) spectroscopic data for S-dehydroazasirosterol (2).
| No. | Mult. | δ | δ | No. | Mult. | δ | δ |
|---|---|---|---|---|---|---|---|
| 1 | C | 118.2 | 5′ | C | 55.6 | ||
| 2 | C | 169.9 | 6′ | C | 75.6 | 4.85, brs | |
| 3 | C | 105.4 | 7′ | CH | 116.9 | 5.00, brs | |
| 4 | C | 120.9 | 8′ | C | 140.5 | ||
| 5 | C | 174.8 | 9′ | C | 139.0 | ||
| 6 | C | 124.1 | 10′ | C | 40.1 | ||
| 7 | C | 140.6 | 11′ | CH | 124.8 | 5.68 d (5.49) | |
| 8 | C | 104.1 | 12′ | CH2 | 41.9 | a: 2.13, m | |
| 9 | C | 158.4 | b: 2.32, m | ||||
| 10 | CH | 116.4 | 6.82, s | 13′ | C | 42.3 | |
| 11 | C | 142.3 | 14′ | CH | 50.9 | 2.10, m | |
| 12 | CH3 | 23.6 | 2.80, s | 15′ | CH2 | 22.7 | 1.53, m |
| 13 | C | 108.7 | 16′ | CH2 | 28.5 | 1.64, m | |
| 14 | C | 166.2 | 17′ | CH | 55.7 | 1.23, m | |
| 15 | CH | 91.2 | 4.67, q (6.6) | 18′ | CH3 | 11.6 | 0.51, s |
| 16 | CH3 | 14.6 | 1.46, d (6.6) | 19′ | CH3 | 23.5 | 1.25, s |
| 17 | C | 43.2 | 20′ | CH | 40.3 | 1.98 | |
| 18 | CH3 | 25.7 | 1.54, s | 21′ | CH3 | 20.6 | 0.98, d (6.6) |
| 19 | CH | 20.7 | 1.30, s | 22′ | CH | 135.3 | 5.10, dd (7.7, 15.0) |
| 2-OH | 16.84, s | 23′ | CH | 132.2 | 5.18, dd (7.0, 15.0) | ||
| 9-OH | 9.76, s | 24′ | CH | 42.8 | 1.82, m | ||
| NH | 3.98, s | 25′ | CH | 33.0 | 1.43, m | ||
| 1′ | CH2 | 29.4 | 2.01, m | 26′ | CH3 | 19.6 | 0.78, d (6.3) |
| 2′ | CH2 | 30.3 | 1.68, m | 27′ | CH3 | 19.9 | 0.80, d (6.3) |
| 3′ | CH | 66.8 | 4.11, m | 28′ | CH3 | 17.6 | 0.88, d (6.3) |
| 4′ | CH2 | 37.0 | a: 1.54, m | ||||
| b: 2.12, m |
NMR (CDCl3) spectroscopic data for 4a.
| No. | δ | Multi. | δ | 1H-1H COSY | 1H-13C HMBC | 1H-1H NOESY |
|---|---|---|---|---|---|---|
| 1 | 97.1 | CH | 6.37, s | 2, 3, 13, 14 | 20 | |
| 2 | 168.8 | C | ||||
| 3 | 101.8 | C | ||||
| 4 | 137.1 | C | ||||
| 5 | 197.1 | C | ||||
| 6 | 77.7 | C | ||||
| 7 | 199.2 | C | ||||
| 8 | 105.5 | C | ||||
| 9 | 165.6 | C | ||||
| 10 | 119.1 | CH | 6.77, s | 12 | 8, 9, 13 | 12 |
| 11 | 150.0 | C | ||||
| 12 | 26.6 | CH3 | 2.78, s | 10 | 10, 11, 13 | 10 |
| 13 | 113.7 | C | ||||
| 14 | 166.5 | C | ||||
| 18 | 18.3 | CH3 | 1.78, s | 20, 21 | 19, 21, 22 | 20 |
| 19 | 25.8 | CH3 | 1.83, s | 20, 21 | 18, 21, 22 | 21 |
| 20 | 66.3 | CH2 | 4.68, d, 6.6 | 18, 19, 21 | 14, 21, 22 | 1, 18 |
| 21 | 117.7 | CH | 5.54, br t, 6.6 | 18, 19, 20 | 19 | |
| 22 | 139.9 | C | ||||
| 23 | 52.0 | CH2 | 3.25, s | 5, 6, 7, 24 | 25 | |
| 24 | 205.6 | C | 23, 24 | |||
| 25 | 31.1 | CH3 | 2.19, s | 23 | ||
| 2-OH | 13.24, s | 1, 2, 3 | ||||
| 9-OH | 12.67, s | 8, 9, 10 |
NMR (CDCl3) spectroscopic data for 5a.
| No. | δ | Mult. | δ | 1H-1H COSY | 1H-13C HMBC | 1H-1H NOESY |
|---|---|---|---|---|---|---|
| 1 | 118.4/118.5 | C | ||||
| 2 | 165.5/165.4 | C | ||||
| 3 | 102.5 | C | ||||
| 4 | 137.4 | C | ||||
| 5 | 196.9/196.8 | C | ||||
| 6 | 77.1/77.3 | C | ||||
| 7 | 199.2 | C | ||||
| 8 | 105.4 | C | ||||
| 9 | 166.2/166.1 | C | ||||
| 10 | 117.9 | CH | 6.74, br s | 12 | 8, 9, 12, 13 | 12 |
| 11 | 149.3 | C | ||||
| 12 | 24.3 | CH3 | 2.76, s | 10 | 10, 11, 13 | 10 |
| 13 | 109.7 | C | ||||
| 14 | 166.1 | C | ||||
| 15 | 91.7/91.6 | CH | 4.64, q (6.6) | 16 | 17, 18, 19 | 16, 18 |
| 16 | 14.7 | CH3 | 1.46, d (6.6) | 15 | 15, 17 | 15, 19 |
| 17 | 43.3 | C | ||||
| 18 | 25.7 | CH3 | 1.51/1.52, s | 1, 17, 19 | 15 | |
| 19 | 20.6 | CH3 | 1.30/1.27, s | 1, 15, 17, 18 | 16 | |
| 23 | 51.8/52.1 | CH2 | 3.31/3.27, s | 5, 6, 7, 24 | ||
| 24 | 206.1/205.9 | C | ||||
| 25 | 31.1/31.0 | CH3 | 2.20, s | 24 | ||
| 2-OH | 13.34/13.29, s | 1, 2, 3, 5 | ||||
| 9-OH | 12.81/12.78, s | 8, 9, 10 |
NMR (CD3COCD3) spectroscopic data for 6a.
| No. | δ | Mult. | δ | 1H-13C HMBC | 1H-1H NOESY |
|---|---|---|---|---|---|
| 1 | 117.9 | C | |||
| 2 | 169.2 | C | |||
| 3 | 94.9 | C | |||
| 4 | 125.8 | C | |||
| 5 | 189.1/189.2 | C | |||
| 6 | 119.1 | C | |||
| 7 | 157.1 | C | |||
| 8 | 130.2 | C | |||
| 9 | 146.7 | C | |||
| 10 | 118.5 | CH | 6.81, s | 8, 9, 12, 13 | |
| 11 | 132.0 | C | |||
| 12 | 22.1 | CH3 | 2.66, s | 10, 11, 13, 14 | |
| 13 | 109.8 | C | |||
| 14 | 167.2 | C | |||
| 15 | 92.06/92.13 | CH | 4.69, q (6.6) | 14, 17, 18, 19 | 16, 18 |
| 16 | 14.8/14.7 | CH3 | 1.51, d (6.6) | 15, 17 | 19 |
| 17 | 43.9/43.8 | C | |||
| 18 | 25.8/26.0 | CH3 | 1.53, s | 1, 15, 17, 19 | 15 |
| 19 | 20.9/21.0 | CH3 | 1.30, s | 1, 15, 17, 18 | 16 |
| 2-OH | 12.99 | ||||
| 9-OH | 11.98 |
Figure 3Estrogen showed hydrogen bonds interactions with ERα-LBD active site.
Figure 4Compound 1 showed hydrogen bonds interaction with ERα-LBD active site.
Figure 5Compound 1 (red molecule) superimposed with standard drug (green molecule) in ERα-LBD active site (Color figure online).