| Literature DB >> 26058010 |
Suthatip Ngokpol1, Wittaya Suwakulsiri2, Sanya Sureram3, Kriengsak Lirdprapamongkol4, Thammarat Aree5, Suthep Wiyakrutta6, Chulabhorn Mahidol7,2, Somsak Ruchirawat7,2,8, Prasat Kittakoop9,10,11.
Abstract
Four new sesquiterpene lactones (3, 4, 6 and 7) and three known compounds, purpuride (1), berkedrimane B (2) and purpuride B (5), were isolated from the marine fungus, Talaromyces minioluteus (Penicillium minioluteum). New compounds were drimane sesquiterpenes conjugated with N-acetyl-l-valine, and their structures were elucidated by analysis of spectroscopic data, as well as by single crystal X-ray analysis. The isolated compounds could not inhibit the apoptosis-regulating enzyme, caspase-3, while three of the compounds (2, 3 and 7) exhibited weak cytotoxic activity.Entities:
Keywords: Penicillium minioluteum; Talaromyces minioluteus; caspase-3; cytotoxic activity; drimane; fungal metabolites; marine fungi; sesquiterpene
Mesh:
Substances:
Year: 2015 PMID: 26058010 PMCID: PMC4483645 DOI: 10.3390/md13063567
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structure of fungal metabolites 1–7.
1H (600 MHz) and 13C (150 MHz) NMR data (CDCl3) for compounds 3 and 4.
| 3 | 4 | |||
|---|---|---|---|---|
| δC | δH, multi ( | δC | δH, multi ( | |
| 1 | 74.3 | 5.02, brs | 74.4 | 4.97, s |
| 2 | 22.4 | 1.85, dq (2.9, 15.1); 1.95–2.07, m | 22.4 | 1.83, dq (2.7, 15.1); 1.94, m |
| 3 | 34.8 | 1.42, dt (3.8, 13.8); 1.65, td (4.0, 14.0) | 34.9 | 1.38, dt (2.5, 13.7); 1.58, td (4.2,13.9) |
| 4 | 32.2 | - | 32.3 | - |
| 5 | 39.8 | 2.40, d (12.4) | 39.7 | 2.20, dd (1.1,12.4) |
| 6 | 28.4 | 1.95–2.07, m; 2.22, d (14.8) | 27.2 | 1.75, td (4.4, 13.9); 2.01, brd (14.1) |
| 7 | 48.6 | 4.86, t (1.8) | 59.6 | 4.55, brd (1.6) |
| 8 | 126.4 | - | 127.1 | - |
| 9 | 170.8 | - | 170.8 | - |
| 10 | 41.5 | - | 41.4 | - |
| 11 | 67.8 | 4.60, d (17.6); 4.72, dd (1.9,17.6) | 68.2 | 4.60, d (17.4); 4.72, dd (1.6,17.4) |
| 12 | 170.8 | - | 173.4 | - |
| 13 | 32.7 | 1.06, s | 33.0 | 1.04, s |
| 14 | 21.8 | 0.97, s | 21.4 | 0.96, s |
| 15 | 20.2 | 1.24, s | 19.6 | 1.20, s |
| 1′ | 170.2 | - | 170.8 | - |
| 2′ | 58.2 | 4.42, dd (5.3, 8.2) | 58.5 | 4.32, dd (6.0, 8.0) |
| 3′ | 30.8 | 2.06, m | 30.3 | 2.07, oct (6.5) |
| 4′ | 18.0 | 0.89, d (6.6) | 18.0 | 0.92, d (6.6) |
| 5′ | 19.0 | 0.94, d (6.6) | 19.1 | 0.95, d (6.6) |
| 1″ | 170.3 | - | 170.5 | - |
| 2″ | 22.9 | 2.00, s | 22.7 | 1.97, s |
| N | - | 5.74, d (8.0) | - | 6.16, d (7.9) |
| OMe | - | - | - | - |
Figure 2ORTEP plot (20% probability level) of 3 (color codes: C = cyan, O = red, N = purple, Cl = green, H = white). The molecule is stabilized by an intermolecular O–H···O hydrogen bond (magenta) with a disordered water molecule (occupancy factor 0.25).
1H (600 MHz) and 13C (150 MHz) NMR data (CDCl3) for compounds 6 and 7.
| 6 | 7 | |||
|---|---|---|---|---|
| δC | δH, multi (J in Hz) | δC | δH, multi (J in Hz) | |
| 1 | 74.6 | 5.00, brs | 71.0 | 3.89, brs |
| 2 | 22.3 | 1.78, q (3.0); 1.96, m | 25.7 | 1.63, dq (3.1,14.8); 2.06, m |
| 3 | 34.5 | 1.36, dt (2.5, 15.2); 1.53-1.63, m | 34.1 | 1.33, dt (3.7, 12.8); 1.74, td (4.1, 14.1) |
| 4 | 32.6 | - | 32.5 | - |
| 5 | 44.4 | 1.81, brd (12.8) | 39.1 | 2.06, brd (13.2) |
| 6 | 27.1 | 1.53–1.63, m; 2.26, dd (6.9, 12.9) | 25.6 | 1.86, ddd (15.0, 13.2, 4.5); 1.97, brd (15.0) |
| 7 | 64.8 | 4.61, t (8.8) | 62.9 | 5.71, t (2.0) |
| 8 | 127.8 | - | 122.7 | - |
| 9 | 168.5 | - | 175.9 | - |
| 10 | 41.6 | - | 42.2 | - |
| 11 | 68.0 | 4.55, dd (2.7, 17.2); 4.73, d (17.2) | 68.5 | 4.81, dd (2.0, 17.1); 5.11, d (17.1) |
| 12 | 172.9 | - | 171.8 | - |
| 13 | 33.1 | 1.02, s | 32.7 | 0.93, s |
| 14 | 21.4 | 0.97, s | 21.1 | 0.91, s |
| 15 | 21.1 | 1.33, s | 20.1 | 1.13, s |
| 1′ | 171.2 | - | 170.8 | - |
| 2′ | 57.7 | 4.43, dd (4.8, 8.2) | 57.3 | 4.56, dd (4.6, 8.7) |
| 3′ | 30.6 | 1.96, m | 31.2 | 2.17, otc (6.8) |
| 4′ | 17.5 | 0.85, d (6.8) | 17.6 | 0.90, d (6.6) |
| 5′ | 19.0 | 0.92, d (6.8) | 19.0 | 0.95, d (6.6) |
| 1′′ | 170.0 | - | 169.7 | - |
| 2′′ | 23.0 | 2.01, s | 23.1 | 2.02, s |
| N | - | 5.78, d (8.2) | - | 6.04, d (8.6) |
Figure 3Effect of compounds 1–7 on caspase-3 enzymatic activity. Apoptotic HepG2 cell lysates were individually incubated with various concentrations (12.5–200 μM) of purpuride (1) and 200 µM of compounds 2–7. A caspase-3 inhibitor (5 µM), Z-DEVD-fmk, was used as a positive control. Data are mean + SD of three independent experiments. Ctl = A control without compounds.