| Literature DB >> 36043060 |
Dan-Dan Xia1, Hao-Jie Duan1, Fei Xie1, Tian-Peng Xie1, Yan Zhang1, Yue Sun1, Jian-Mei Lu1, Yu-Hong Gao2, Hao Zhou1, Zhong-Tao Ding1,3.
Abstract
Five previously undescribed epoxy octa-hydronaphthalene polyketides, altereporenes A-E (1-5) were isolated from rice culture of the endophytic fungus Alternaria sp. YUD20002 derived from the tubers of Solanum tuberosum. Their structures were determined on the basis of comprehensive spectroscopic analyses, while the absolute configurations were elucidated by the comparison of experimental and calculated specific rotations. Meanwhile, the antimicrobial, cytotoxic, anti-inflammatory and acetylcholinesterase inhibitory activities of compounds 1-5 were also investigated. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 36043060 PMCID: PMC9364171 DOI: 10.1039/d2ra03917f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Chemical structures of compounds 1–5.
13C NMR spectroscopic data of compounds 1–5 (δ in ppm)a
| Pos. | 1 | 2 | 3 | 4 | 5 |
|---|---|---|---|---|---|
| 1 | 62.6, CH2 | 177.8, C | 63.8, CH2 | 197.3, C | 179.5, C |
| 2 | 32.0, CH2 | 36.0, CH2 | 133.9, CH | 137.5, C | 130.3, C |
| 3 | 37.1, CH2 | 118.7, CH | 130.6, CH | 151.2, CH | 138.4, CH |
| 4 | 137.4, C | 139.8, C | 47.2, CH | 130.4, CH | 130.9, CH |
| 5 | 126.5, CH | 43.9, CH2 | 43.2, CH | 145.3, CH | 139.1, CH |
| 6 | 131.3, CH | 132.6, CH | 65.7, CH | 48.3, CH | 48.0, CH |
| 7 | 130.5, CH | 130.5, CH | 125.5, CH | 43.6, CH | 43.5, CH |
| 8 | 47.5, CH | 47.3, CH | 139.3, C | 66.0, CH | 65.9, CH |
| 9 | 43.8, CH | 43.3, CH | 37.0, CH | 125.5, CH | 125.6, CH |
| 10 | 66.0, CH | 66.0, CH | 30.4, CH | 139.3, C | 139.8, C |
| 11 | 125.6, CH | 125.6, CH | 59.9, CH | 36.9, CH2 | 37.0, CH2 |
| 12 | 139.2, C | 139.2, C | 62.1, CH | 30.4, CH | 30.3, CH |
| 13 | 37.1, CH2 | 37.0, CH2 | 78.3, C | 59.9, CH | 60.0, CH |
| 14 | 30.3, CH | 30.3, CH | 138.5, C | 62.2, CH | 62.2, CH |
| 15 | 60.0, CH | 60.0, CH | 123.8, CH | 78.6, C | 78.5, C |
| 16 | 62.2, CH | 62.2, CH | 13.7, CH3 | 138.1, C | 139.0, C |
| 17 | 78.5, C | 78.3, C | 23.4, CH3 | 124.4, CH | 124.0, CH |
| 18 | 138.7, C | 138.6, C | 14.8, CH3 | 13.7, CH3 | 13.7, CH3 |
| 19 | 123.6, CH | 123.7, CH | 9.4, CH3 | 13.5, CH3 | |
| 20 | 13.7, CH3 | 13.7,CH3 | 23.4, CH3 | 23.4, CH3 | |
| 21 | 16.7, CH3 | 16.8, CH3 | 14.8, CH3 | 14.8, CH3 | |
| 22 | 23.4, CH3 | 23.4, CH3 | |||
| 23 | 14.8, CH3 | 14.9, CH3 |
Measured at 400 MHz in methanol-d4.
1H NMR spectroscopic data of compounds 1–5 (δ in ppm, J in Hz)a
| Pos. | 1 | 2 | 3 | 4 | 5 |
|---|---|---|---|---|---|
| 1 | 3.53, t (6.6) | 4.04, m | 9.39, s | ||
| 2 | 1.63, overlap | 2.95, d (7.4) | 5.74, dt (15.3, 6.3) | ||
| 3 | 2.10, t (7.1) | 5.39, m | 5.22, dd (15.3, 10.4) | 6.99, d (11.3) | 7.08, d (11.4) |
| 4 | 2.39, t (11.6) | 6.77, dd (14.9, 11.3) | 6.55, dd (14.8, 11.3) | ||
| 5 | 5.83, d (10.9) | 2.75, d (6.7) | 1.38, td (11.8, 3.0) | 5.91, dd (15.0, 10.6) | 5.56, overlap |
| 6 | 6.42, dd (15.0, 10.9) | 5.60, dt (15.2, 6.8) | 3.84, dd (4.2, 3.4) | 2.62, t (11.8) | 2.53, t (11.2) |
| 7 | 5.06, dd (15.0, 10.3) | 4.97, dd (15.2, 10.4) | 5.53, m | 1.51, td (11.8, 3.0) | 1.45, td (11.8,3.0) |
| 8 | 2.40, t (11.8) | 2.36, t (11.8) | 3.78, dd (6.0, 2.9) | 3.79, dd (5.0, 3.7) | |
| 9 | 1.37, td (11.8, 3.1) | 1.34, td (11.8, 3.0) | 2.20, m | 5.54, overlap | 5.53, overlap |
| 1.90, m | |||||
| 10 | 3.81, dd (5.8, 3.5) | 3.83, dd (4.4, 3.0) | 2.14, m | ||
| 11 | 5.53, d (5.6) | 5.54, m | 3.17, d (3.8) | 2.25, m | 2.23, m |
| 1.94, m | 1.93, m | ||||
| 12 | 3.08, d (3.7) | 2.20, m | 2.18, m | ||
| 13 | 2.20, m | 2.21, m | 3.21, d (3.8) | 3.19, d (3.8) | |
| 1.90, m | 1.90, m | ||||
| 14 | 2.17, m | 2.16, m | 3.11, d (3.8) | 3.10, d (3.8) | |
| 15 | 3.17, d (3.8) | 3.16, d (3.8) | 5.48, m | ||
| 16 | 3.08, d (3.8) | 3.07, d (3.8) | 1.67, overlap | ||
| 17 | 1.74, s | 5.54, overlap | 5.5, overlap | ||
| 18 | 1.68, overlap | 1.71, overlap | 1.70, overlap | ||
| 19 | 5.47, m | 5.47, m | 1.83, s | 1.93, overlap | |
| 20 | 1.68, m | 1.66, overlap | 1.75, s | 1.74, s | |
| 21 | 1.77, s | 1.68, overlap | 1.69, overlap | 1.68, overlap | |
| 22 | 1.73, s | 1.73, s | |||
| 23 | 1.67, m | 1.69, overlap |
Measured at 400 MHz in methanol-d4.
Fig. 2The key 1H–1H COSY and HMBC correlations of compounds 1–5.
Fig. 3Key NOESY correlations and the lowest energy state models of compounds 1–5 at B3LYP/6-31g (d, p) in methanol.