| Literature DB >> 28264430 |
Eun Young Yoon1,2, A Reum Yang3, Jaeyeon Park4, Seung Joo Moon5, Eun Ju Jeong6, Jung-Rae Rho7.
Abstract
Two new compounds-a trioxilin and a sulfoquinovosyl diacylglycerol (SQDG)-were isolated from the methanolic extract of the heterotrophic dinoflagellate Oxyrrhis marina cultivated by feeding on dried yeasts. The trioxilin was identified as (4Z,8E,13Z,16Z,19Z) -7(S),10(S),11(S)-trihydroxydocosapentaenoic acid (1), and the SQDG was identified as (2S)-1-O-hexadecanosy-2-O-docosahexaenoyl-3-O-(6-sulfo-α-d-quinovopyranosyl)-glycerol (2) by a combination of nuclear magnetic resonance (NMR) spectra, mass analyses, and chemical reactions. The two compounds were associated with docosahexaenoic acid, which is a major component of O. marina. The two isolated compounds showed significant nitric oxide inhibitory activity on lipopolysaccharide-induced RAW264.7 cells. Compound 2 showed no cytotoxicity against hepatocarcinoma (HepG2), neuroblastoma (Neuro-2a), and colon cancer (HCT-116) cells, while weak cytotoxicity was observed for compound 1 against Neuro-2a cells.Entities:
Keywords: Oxyrrhis marina; docosahexaenoic acid; nitric oxide inhibition; sulfoquinovosyl diacylglycerols; trioxilin
Mesh:
Substances:
Year: 2017 PMID: 28264430 PMCID: PMC5367014 DOI: 10.3390/md15030057
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Chemical structures of compounds 1 and 2.
Nuclear Magnetic Resonance (NMR) spectral data for compound 1 in CD3OD.
| Position | δC | δH ( |
|---|---|---|
| 1 | 177.3, C | |
| 2 | 35.2, CH2 | 2.31, m |
| 3 | 24.2, CH2 | 2.33, m |
| 4 | 131.1, CH | 5.46, m |
| 5 | 127.6, CH | 5.47, m |
| 6 | 36.3, CH2 | 2.31, m |
| 7 | 73.0, CH | 4.10, dt (6.1, 6.1) |
| 8 | 136.2, CH | 5.72, dd (15.7, 6.1) |
| 9 | 130.9, CH | 5.78, dd (15.7, 6.1) |
| 10 | 76.0, CH | 3.96, dd (6.1, 4.7) |
| 11 | 75.9, CH | 3.53, dt (8.3, 4.7) |
| 12 | 31.8, CH2 | 2.18, dd (14.9, 8.3); 2.33, m |
| 13 | 127.4, CH | 5.49, m |
| 14 | 130.7, CH | 5.42, m |
| 15 | 26.8, CH2 | 2.84, dd (6.6, 6.1) |
| 16 | 129.0, CH | 5.34, m |
| 17 | 129.5, CH | 5.34, m |
| 18 | 26.4, CH2 | 2.81, dd (7.1, 5.9) |
| 19 | 128.2, CH | 5.29, m |
| 20 | 132.8, CH | 5.37, m |
| 21 | 21.5, CH2 | 2.08, q (7.3) |
| 22 | 14.7, CH3 | 0.96, t (7.6) |
Figure 2Key correlated spectroscopy (COSY) (bold lines) and heteronuclear multiple-bond correlation spectroscopy (HMBC) (arrows) correlations of compound 1.
Figure 3Conformers of C-10 and C-11 of compound 1, based on J-based configuration analysis.
NMR spectral data for compound 2 in CD3OD.
| Position | δC | δH ( |
|---|---|---|
| 1 | 64.2, CH2 | 4.18, dd (11.0, 6.9); 4.49, dd (11.0, 2.9) |
| 2 | 71.9, CH | 5.31, m |
| 3 | 67.1, CH2 | 3.57, dd (10.8, 6.4); 4.11, dd (10.8, 5.1) |
| 1′ | 175.1, C | |
| 2′ | 35.0, CH2 | 2.31, t (7.6) |
| 3′ | 26.0, CH2 | 1.54, q (7.6) |
| 4′ | 30.2, CH2 | 1.30, m |
| 5′–13′ | 30.8–30.5, CH2 | 1.30, m |
| 14′ | 33.1, CH2 | 1.26, m |
| 15′ | 23.7, CH2 | 1.30, m |
| 16′ | 14.4, CH3 | 0.89, t (6.9) |
| 1″ | 174.2, C | |
| 2″ | 35.1, CH2 | 2.39, m |
| 3″ | 23.7, CH2 | 2.39, m |
| 4″ | 130.1, CH | 5.37, m |
| 5″, 7″–8″, | 129.5–129.0, CH2 | 5.36, m |
| 10″–11″, 13″–14″ | ||
| 16″–17″, 19″ | ||
| 6″, 9″ 12″, 15″, 18″ | 26.6–26.5, CH2 | 2.85, m |
| 20″ | 132.8, CH | 5.36, m |
| 21″ | 21.5, CH2 | 2.08, q (7.6) |
| 22″ | 14.7, CH3 | 0.96, t (7.6) |
| 1‴ | 100.1, CH | 4.75, d (3.9) |
| 2‴ | 73.5, CH | 3.39, dd (9.8, 3.9) |
| 3‴ | 74.9, CH | 3.62, t (9.8) |
| 4‴ | 75.1, CH | 3.08, dd (9.8, 9.1) |
| 5‴ | 69.9, CH | 4.07, td (9.1, 2.0) |
| 6‴ | 54.3, CH2 | 2.91, dd (14.2, 9.1); 3.34, dd (14.2, 2.0) |