| Literature DB >> 23170085 |
Eric H Andrianasolo1, Liti Haramaty1, Richard Rosario-Passapera1, Costantino Vetriani1, Paul Falkowski1, Eileen White2, Richard Lutz1.
Abstract
Chemical and biological investigation of the cultured marine hydrothermal vent bacterium, Thermovibrio ammonifican led to the isolation of two hydroxyethylamine chromene derivatives, ammonificins C and D. Their structures were elucidated using combination of NMR and mass spectrometry. Absolute stereochemistry was ascertained by comparison of experimental and calculated CD spectra. Biological evaluation and assessment were determined using the patented ApopScreen cell-based screen for apoptosis-induction. Ammonificins C and D induce apoptosis in micromolar concentrations. To our knowledge, this finding is the first report of chemical compounds that induce apoptosis from the cultured deep-sea marine organism, hydrothermal vent bacterium, Thermovibrio ammonificans.Entities:
Keywords: bacteria; computational methods; deep-sea hydrothermal vent; drug discovery; induction of apoptosis; marine natural product
Mesh:
Substances:
Year: 2012 PMID: 23170085 PMCID: PMC3497024 DOI: 10.3390/md10102300
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 6.085
Figure 1Structures of ammonificins A (1) and B (2).
Figure 2Structures of ammonificins C (3) and D (4).
Figure 3Key HMBC and selected COSY correlations for ammonificin C (3).
Figure 4Comparison of the experimental CD spectrum () of 3 with the spectrum calculated (...........) for 9R.
Figure 5Comparison of the experimental CD spectrum () of 4 with the spectrum calculated (...........) for 9R.
NMR Spectroscopic Data of Ammonificin C (3) (1H 400 MHz, 13C 100 MHz, DMSO-d).
| Position | δC type | δH mult. (
| HMBC a |
|---|---|---|---|
| 2a | 76.2, CH2 | 4.41, d (6.1) | 8 a, 4 |
| 2b | 4.10, d (6.1) | 3 | |
| 3 | 141.5, qC | ||
| 4 | 111.7, qC | ||
| 4a | 107.9, qC | ||
| 5 | 155.7, qC | ||
| 6 | 108.0, CH | 6.67, d (7.9) | 4 a, 5, 7, 8 a |
| 7 | 126.8, CH | 7.09, d (7.9) | 5, 8, 8 a |
| 8 | 119.7, qC | ||
| 8a | 157.9, qC | ||
| 9 | 69.6, CH | 4.70, m | 7, 8 |
| 10 | 49.2, CH2 | 3.45, m | 8, 9 |
| 11 | 129.7, qC | ||
| 12 | 133.1, CH | 7.30, s | 4,11, 13, 14, 16 |
| 13 | 110.8, qC | ||
| 14 | 157.1, qC | ||
| 15 | 118.4, CH | 6.77, d (7.2) | 11, 13, 14, 16 |
| 16 | 128.8, CH | 7.26, d (7.2) | 4,11, 12, 14, 15 |
| 17 | 158.9, qC | ||
| 18 | 101.4, CH | 6.65, s | 17, 19, 20, 22 |
| 19 | 156.9, qC | ||
| 20 | 107.3, CH | 6.74, d (7.8) | 18, 19, 21, 22 |
| 21 | 130.5, CH | 7.01, dd (7.6,7.8) | 17, 19, 20, 22 |
| 22 | 106.8, CH | 6.81, d (7.6) | 17, 18, 20, 21 |
| OH on C-5 | 9.26, br s | ||
| OH on C-14 | 8.48, br s | ||
| OH on C-19 | 9.47, br s |
a HMBC correlations, optimized for 8 or 6.5 Hz, are from proton(s) stated to the indicated carbon.
NMR Spectroscopic Data of Ammonificin D (4) (1H600 MHz, 13C 150 MHz, DMSO-d).
| Position | δC type | δH mult. (
| HMBC a |
|---|---|---|---|
| 2a | 76.2, CH2 | 4.41, d (6.1) | 8 a, 4 |
| 2b | 4.10, d (6.1) | 3 | |
| 3 | 141.5, qC | ||
| 4 | 111.7, qC | ||
| 4a | 107.91, qC | ||
| 5 | 155.7, qC | ||
| 6 | 108.0, CH | 6.67, d (7.9) | 4 a, 5, 7, 8 a |
| 7 | 126.8, CH | 7.09, d (7.9) | 5, 8, 8 a |
| 8 | 119.7, qC | ||
| 8a | 157.9, qC | ||
| 9 | 69.6, CH | 4.65, t (4.3) | 7, 8 |
| 10 | 49.2, CH2 | 3.45, m | 8, 9 |
| 11 | 136.1, qC | ||
| 12 | 133.9, CH | 7.26, s | 4, 11, 13, 14, 16 |
| 13 | 126.9, qC | ||
| 14 | 123.9, qC | ||
| 15 | 132.5, CH | 7.28, d (7.2) | 11, 13, 14, 16 |
| 16 | 129.6, CH | 7.24, d (7.2) | 4, 11, 12, 14, 15 |
| 17 | 158.9, qC | ||
| 18 | 101.4, CH | 6.65, s | 17, 19, 20, 22 |
| 19 | 156.9, qC | ||
| 20 | 107.3, CH | 6.74, d (7.8) | 18, 19, 21, 22 |
| 21 | 130.5, CH | 7.01, dd (7.6,7.8) | 17, 19, 20, 22 |
| 22 | 106.8, CH | 6.81, d (7.6) | 17, 18, 20, 21 |
| OH on C-5 | 9.26, br s | ||
| OH on C-19 | 9.47, br s |
a HMBC correlations, optimized for 8 or 6.5 Hz, are from proton(s) stated to the indicated carbon.