| Literature DB >> 23966034 |
Lik Tong Tan1, Tatsufumi Okino, William H Gerwick.
Abstract
The tropical marine cyanobacterium, Moorea bouillonii, has gained recent attention as a rich source of bioactive natural products. Continued chemical investigation of this cyanobacterium, collected from New Britain, Papua New Guinea, yielded a novel cytotoxic cyclic depsipeptide, bouillonamide (1), along with previously reported molecules, ulongamide A and apratoxin A. Planar structure of bouillonamide was established by extensive 1D and 2D NMR experiments, including multi-edited HSQC, TOCSY, HBMC, and ROESY experiments. In addition to the presence of α-amino acid residues, compound 1 contained two unique polyketide-derived moieties, namely a 2-methyl-6-methylamino-hex-5-enoic acid (Mmaha) residue and a unit of 3-methyl-5-hydroxy-heptanoic acid (Mhha). Absolute stereochemistry of the α-amino acid units in bouillonamide was determined mainly by Marfey's analysis. Compound 1 exhibited mild toxicity with IC50's of 6.0 µM against the neuron 2a mouse neuroblastoma cells.Entities:
Mesh:
Substances:
Year: 2013 PMID: 23966034 PMCID: PMC3766879 DOI: 10.3390/md11083015
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Moorea bouillonii found attached to corals.
Figure 2Natural products isolated from Moorea bouillonii (PNGRD 8/21/00-2).
NMR spectral data for bouillonamide (1) at 400 MHz (1H) and 100 MHz (13C) in CDCl3.
| Unit | Position | δH, mult. ( | δC | HMBC |
|---|---|---|---|---|
| Mmaha | 1 | 175.7 s | ||
| 2 | 2.34 m | 42.3 d | C-1, C-7 | |
| 3 | 1.68 m | 36.9 t | ||
| 1.27 m | ||||
| 4 | 1.93 m | 29.3 t | ||
| 1.69 m | ||||
| 5 | 4.89 m | 109.6 d | ||
| 6 | 6.64 d (13.4) | 130.5 d | C-4, C-5, C-8, C-9 | |
| 7 | 1.19 d (7.1) | 20.5 q | C-1, C-2, C-3 | |
| 8
| 3.08 s | 29.7 q | C-5, C-6, C-9 | |
| Mhha | 9 | 171.3 s | ||
| 10 | 2.44 m | 39.5 t | C-9, C-11, C-12, C-16 | |
| 2.44 m | C-9, C-11, C-12, C-16 | |||
| 11 | 2.03 m | 28.0 d | ||
| 12 | 1.64 m | 40.5 t | C-10, C-1, C-13, C-14, C-15, C-16 | |
| 1.52 m | C-10, C-1, C-13, C-14, C-16 | |||
| 13 | 4.96 m | 76.6 d | C-15 | |
| 14 | 1.85 m | 25.9 t | ||
| 1.62 m | ||||
| 15 | 0.94 t (7.4) | 9.2 q | C-13, C-14 | |
| 16 | 0.94 m | 20.6 q | C-10, C-11, C-12 | |
| 17 | 169.5 s | |||
| 18 | 4.31 dd (11.5, 3.8) | 61.4 d | C-17, C-19, C-26, C-27 | |
| 19 | 3.28 m | 36.1 t | C-18, C-20, C-21/25 | |
| 2.90 m | C-18, C-20, C-21/25 | |||
| 20 | 136.5 s | |||
| 21/25 | 7.13 m | 129.5 d | ||
| 22/24 | 7.35 m | 128.8 d | ||
| 23 | 7.06 m | 127.4 d | ||
| 26
| 2.91 s | 30.9 q | C-18, C-27 | |
| 27 | 171.3 s | |||
| 28 | 4.54 d (4.7) | 57.7 d | C-29, C-30, C-31 | |
| 29 | 3.85 m | 67.8 d | ||
| OH | 3.34 d (4.7) | C-29, C-30 | ||
| 30 | 0.84 d (6.2) | 19.9 q | C-28, C-29 | |
| 31
| 2.79 s | 32.8 q | C-32, C-28 | |
| 32 | 170.4 s | |||
| 33 | 5.49 dd (8.4, 5.6) | 56.4 d | C-32, C-34, C-41, C-42 | |
| 34 | 3.28 m | 35.3 t | C-32, C-33, C-35, C-36/40, C-42 | |
| 2.90 m | C-32, C-33, C-35, C-36/40, C-42 | |||
| 35 | 138.0 s | |||
| 36/40 | 7.23 m | 129 5 d | ||
| 37/39 | 7.35 m | 129.3 d | ||
| 38 | 7.24 m | 127.7 d | ||
| 41
| 3.10 s | 31.3 q | C-33, C-42 | |
| Val | 42 | 172.1 s | ||
| 43 | 4.86 dd (8.6, 3.0) | 52.8 d | C-42, C-44, C-45, C-46 | |
| 44 | 1.96 m | 31.2 d | ||
| 45 | 0.74 d (6.7) | 16.4 q | C-43, C-44, C-46 | |
| 46 | 0.95 d (6.8) | 20.6 q | C-43, C-44, C-45 | |
| 6.02 d (8.6) | C-42, C-1 |
Figure 3Partial structures 1a to 1f of bouillonamide (1).