| Literature DB >> 25159894 |
He-Ping Chen1, Zhen-Zhu Zhao, Rong-Hua Yin, Xia Yin, Tao Feng, Zheng-Hui Li, Kun Wei, Ji-Kai Liu.
Abstract
Phytochemical reinvestigation on the cultural broth of Boreostereum vibrans led to the isolation of six new vibralactone derivatives, vibralactone N (1), vibralactone O (2), vibralactone P (3), 10-lactyl vibralactone G (4), (3S*, 4R*)-6-acetoxymethyl-2,2-dimethyl-3,4-dihydro-2H-chromene-3,4-diol (5), vibralactone Q (6). Their structures were elucidated by extensive spectroscopic methods.Entities:
Year: 2014 PMID: 25159894 PMCID: PMC4199947 DOI: 10.1007/s13659-014-0029-z
Source DB: PubMed Journal: Nat Prod Bioprospect ISSN: 2192-2209
1H NMR (600 MHz) and 13C NMR (150 MHz) data of compounds 1–3 (δ in ppm, J in Hz)
| Position | 1a | 2a | 3b | |||
|---|---|---|---|---|---|---|
| 1 | 65.8, s | 218.7, s | 210.7, s | |||
| 2 | 125.8, d | 5.61, s | 57.3, d | 2.04, overlapped | 137.8, s | |
| 3 | 145.4, s | 42.6, d | 2.24, m | 173.2, s | ||
| 4 | 41.4, t | 2.28, dd (16.3, 1.5) | 31.0, t | 1.25, m | 34.1, t | 2.69, dd (18.6, 6.3) |
| 2.67, dd (16.3, 5.6) | 2.17, overlapped | 2.24, dd (18.6, 1.8) | ||||
| 5 | 78.9, d | 4.20, ddd (6.4, 5.6, 1.5) | 50.8, d | 2.16, overlapped | 45.4, d | 2.46, overlapped |
| 6 | 61.7, t | 3.81, ddd (10.5, 6.1, 4.5) | 55.4, t | 4.45, s, 2H | ||
| 3.64, ddd (10.5, 6.6, 6.0) | ||||||
| 7 | 174.5, s | 65.8, t | 3.73, ddd (11.4, 7.6, 5.8) | 62.6, t | 4.58, s, 2H | |
| 3.58, ddd (11.4, 7.0, 4.4) | ||||||
| 8 | 35.8, t | 2.15, dd (13.9, 7.5) | 28.6, t | 2.03, overlapped | 29.6, t | 2.48, overlapped |
| 2.54, dd (13.9, 7.5) | 2.39, m | 2.11, m | ||||
| 9 | 120.8, d | 5.06, br. t (7.5) | 122.7, d | 5.11, br. t (7.8) | 120.7, d | 5.04, br. t (7.6) |
| 10 | 134.3, s | 133.3, s | 134.3, s | |||
| 11 | 17.9, q | 1.57, s, 3H | 17.9, q | 1.59, s, 3H | 18.1, q | 1.61, s, 3H |
| 12 | 26.0, q | 1.65, s, 3H | 26.0, q | 1.66, s, 3H | 25.9, q | 1.69, s, 3H |
| 13 | 61.7, t | 4.09, d (5.7), 2H | ||||
| 7-OCH3 | 51.5, q | 3.61, s, 3H | ||||
| 5-OH | 3.99, d (6.4) | |||||
| 6-OH | 4.26, dd (6.0, 4.5) | |||||
| 7-OH | 4.32, dd (5.8, 4.4) | |||||
| 13-OH | 3.85, t (5.7) | |||||
aRecorded in acetone-d6
bRecorded in chloroform-d
Fig. 1Structures of compounds 1–6
Fig. 2Selected 2D NMR correlations of compounds 2 and 4
1H NMR (600 MHz) and 13C NMR (150 MHz) data of compounds 4–6 (δ in ppm, J in Hz)
| Position | 4a | 5a | 6a | |||
|---|---|---|---|---|---|---|
| 1 | 131.2, s | |||||
| 2 | 178.7, s | 79.5, s | 144.7, d | 6.67, d (3.9) | ||
| 3 | 39.7, d | 2.79, m | 76.5, d | 3.53, dd (8.6,6.1) | 32.4, d | 2.72, m |
| 4 | 34.7, t | 2.12, m 2.03, overlapped | 69.6, d | 4.51, dd (8.4,4.6) | 71.0, t | 4.37, dd (11.0,4.8) |
| 4.11, dd (11.0,7.2) | ||||||
| 4a | 125.9, s | |||||
| 5 | 75.4, d | 4.65, m | 129.5, d | 7.48, d (2.1) | ||
| 6 | 21.3, q | 1.31, d (6.4), 3H | 129.0, s | 165.1, s | ||
| 7 | 29.0, t | 2.46, m | 130.0, d | 7.16, dd (8.3,2.1) | 29.9, t | 2.92, overlapped, 2H |
| 2.33, m | ||||||
| 8 | 125.9, d | 5.53, br. t (7.8) | 117.2, d | 6.70, d (8.3) | 121.5, d | 5.17, br. t (7.2) |
| 8a | 153.3, s | |||||
| 9 | 133.7, s | 19.5, q | 1.18, s, 3H | 134.3, s | ||
| 10 | 70.2, t | 4.55, dd (12.4,2.8) | 27.2, q | 1.42, s, 3H | 17.7, q | 1.62, s, 3H |
| 4.51, dd (12.4,2.8) | ||||||
| 11 | 14.0, q | 1.69, s, 3H | 27.2, t | 4.99, s, 2H | 25.8, q | 1.70, s, 3H |
| 12 | 34.3, t | 1.65, m, 2H | ||||
| 13 | 59.8, t | 3.66, m, 2H | ||||
| 1′ | 175.4, s | 170.9, s | ||||
| 2′ | 67.5, d | 4.25, overlapped | 20.9, q | 2.01, s, 3H | ||
| 3′ | 20.8, q | 1.34, d (6.6), 3H | ||||
| 3-OH | 4.60, d (8.6) | |||||
| 4-OH | 4.67, d (4.6) | |||||
| 13-OH | 3.79, t (4.8) | |||||
| 2′-OH | 4.24, overlapped | |||||
aRecorded in acetone-d6