| Literature DB >> 23880937 |
Chun-Yan An1, Xiao-Ming Li, Chun-Shun Li, Ming-Hui Wang, Gang-Ming Xu, Bin-Gui Wang.
Abstract
Four new quinazolinone alkaloids, namely, aniquinazolines A-D (1-4), were isolated and identified from the culture of Aspergillus nidulans MA-143, an endophytic fungus obtained from the leaves of marine mangrove plant Rhizophora stylosa. The structures of the new compounds were elucidated by spectroscopic analysis, and their absolute configurations were determined on the basis of chiral HPLC analysis of the acidic hydrolysates. The structure for 1 was confirmed by single-crystal X-ray diffraction analysis. All these compounds were examined for antibacterial and cytotoxic activity as well as brine shrimp (Artemia salina) lethality.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23880937 PMCID: PMC3736446 DOI: 10.3390/md11072682
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of the isolated compounds 1–4 and reference compounds fumiquinazoline C and chaetominine.
1H NMR (500MHz) data ofcompounds 1–4 in DMSO-d6 (δ in ppm).
| Position | 1 ( | 2 ( | 3 ( | 4 ( |
|---|---|---|---|---|
| 2-NH | 9.84, br s | 8.61, br s | 9.49, br s | |
| 3 | 4.94, q (6.5) | |||
| 4 | 8.30, s | |||
| 7 | 7.75, dd (7.9, 0.9) | 7.66, d (7.8) | 7.70, m | 7.71, dd (7.9, 0.8) |
| 8 | 7.88, td (7.9, 1.3) | 7.82, t (7.8) | 7.86, td (7.8, 1.2) | 7.87, td (7.9, 1.3) |
| 9 | 7.61, td (7.9, 0.9) | 7.53, t (7.8) | 7.58, td (7.8, 1.2) | 7.59, td (7.9, 0.8) |
| 10 | 8.18, dd (7.9, 1.3) | 8.12, d (7.8) | 8.16, dd (7.8, 1.2) | 8.18, dd (7.9, 1.3) |
| 14 | 5.36, dd (5.5, 1.5) | 5.58, dd (9.6, 4.3) | 5.44, dd (7.4, 6.5) | 4.86, dd (8.1, 5.3) |
| 15 | 2.98, dd (14.0, 5.5) 1.92,dd (14.0, 1.5) | 2.59, dd (14.8, 9.6) 1.83, dd (14.8, 4.3) | 2.61, dd (14.5, 7.4) 2.20, dd (14.5, 6.5) | 3.01, dd (14.0, 8.1) 2.77, dd (14.0, 5.3) |
| 16 | 1.91, s | 1.59, d (6.5) | 1.76, s | |
| 17-OH | 5.67, br s | 5.67, br s | 5.45, br s * | |
| 18 | 5.70, dd (6.0, 1.5) | 5.26, d (5.8) | 5.31, dd (7.3, 1.5) | 5.82, s |
| 19-NH | 2.67, d (5.5) | 3.51, m | 3.38, dd (7.3, 2.8) | |
| 20 | 3.59, br d (5.5) | 3.55, br s | 3.53, br s | 4.21, d (9.3) |
| 24 | 7.38, d (7.7) | 7.35, d (7.8) | 7.34, d (7.6) | 7.47, d (7.4) |
| 25 | 7.31, td (7.7, 0.9) | 7.26, t (7.8) | 7.27, td (7.6, 1.0) | 7.43, td (7.4, 1.2) |
| 26 | 7.04, td (7.7, 0.9) | 7.09, t (7.8) | 7.15, td (7.6, 1.0) | 7.26, td (7.4, 1.2) |
| 27 | 7.25, d (7.7) | 7.82, d (7.8) | 7.70, m | 7.54, d (7.4) |
| 29 | 2.09, dq (13.4, 6.8) | 1.99, m | 1.98, m | 2.45, m |
| 30 | 1.07, d (6.8) | 0.93, d (6.8) | 0.91, d (6.6) | 1.15, d (6.7) |
| 31 | 1.07, d (6.8) | 0.96, d (6.8) | 0.92, d (6.6) | 1.12, d (6.7) |
* This exchangeable proton was detected in acetone-d6.
13C NMR (125MHz) data of compounds 1–4 in DMSO-d6 (δ in ppm).
| Position | 1 | 2 | 3 | 4 |
|---|---|---|---|---|
| 1 | 168.6, C | 168.9, C | 169.7, C | 164.8, C |
| 3 | 84.2, C | 48.5, CH | 84.4, C | |
| 4 | 151.5, C | 153.3, C | 150.3, C | 146.7, CH |
| 6 | 146.6, C | 146.6, C | 146.0, C | 147.5, C |
| 7 | 127.8, CH | 126.9, CH | 127.3, CH | 127.1, CH |
| 8 | 134.6, CH | 134.4, CH | 134.6, CH | 134.6, CH |
| 9 | 127.5, CH | 126.7, CH | 127.4, CH | 127.3, CH |
| 10 | 126.4, CH | 126.4, CH | 126.4, CH | 126.1, CH |
| 11 | 120.5, C | 120.0, C | 120.1, C | 121.5, C |
| 12 | 158.8, C | 160.2, C | 160.5, C | 159.7, C |
| 14 | 52.7, CH | 51.8, CH | 52.6, CH | 55.6, CH |
| 15 | 33.7, CH2 | 35.5, CH2 | 39.1, CH2 | 34.1, CH2 |
| 16 | 23.7, CH3 | 16.5, CH3 | 20.3, CH3 | |
| 17 | 86.3, C | 80.1, C | 80.3, C | 73.8, C |
| 18 | 88.4, CH | 88.1, CH | 88.1, CH | 83.7, CH |
| 20 | 69.0, CH | 69.1, CH | 69.0, CH | 69.3, CH |
| 21 | 171.5, C | 172.1, C | 172.6, C | 173.8, C |
| 23 | 136.6, C | 137.2, C | 137.7, C | 140.2, C |
| 24 | 114.3, CH | 115.1, CH | 115.2, CH | 114.2, CH |
| 25 | 129.7, CH | 128.8, CH | 128.6, CH | 130.0, CH |
| 26 | 125.1, CH | 124.6, CH | 124.6, CH | 125.1, CH |
| 27 | 126.2, CH | 125.4, CH | 125.2, CH | 124.5, CH |
| 28 | 137.4, C | 138.7, C | 138.8, C | 134.9, C |
| 29 | 31.4, CH | 31.0, CH | 31.0, CH | 28.2, CH |
| 30 | 17.9, CH3 | 17.6, CH3 | 17.4, CH3 | 18.6, CH3 |
| 31 | 18.5, CH3 | 18.6, CH3 | 18.5, CH3 | 20.1, CH3 |
Figure 2Key 1H–1H COSY (bold lines) and HMBC (red arrows) correlations of compounds 1–4.
Figure 3NOESY correlations of compounds 1–4.
Figure 4X-ray structure of compound 1 (Note: A different numbering system is used for the structure in the text).
Figure 5Chiral HPLC analysis of the amino acid derivatives of compounds 1–4.
Figure 6Electronic Circular Dichroism (ECD) spectra of compounds 1–4.