| Literature DB >> 31430989 |
Hwa-Sun Lee1, Jong Soon Kang2, Byeoung-Kyu Choi1, Hyi-Seung Lee1, Yeon-Ju Lee1, Jihoon Lee1, Hee Jae Shin3.
Abstract
Three new phenazine derivatives (1-3), along with known compounds (4-7) of saphenic acid derivatives, were isolated from a deep-sea sediment-derived yeast-like fungus Cystobasidium larynigs collected from the Indian Ocean. The structures of the new compounds (1-3) were determined by analysis of spectroscopic data, semi-synthesis and comparison of optical rotation values. All the isolated compounds (1-7), except for 2, showed nitric oxide (NO) production inhibitory effect against lipopolysaccharide (LPS)-induced murine macrophage RAW 264.7 cells without cytotoxicity at concentrations up to 30 μg/mL. This is the first report on the yeast-like fungus Cystobasidium laryngis producing phenazines and anti-inflammatory activity of 1-7 including saphenic acid (4).Entities:
Keywords: Cystobasidium laryngis; anti-inflammatory activity; deep-sea sediment; marine yeast-like fungi; phenazine derivatives; saphenic acid
Mesh:
Substances:
Year: 2019 PMID: 31430989 PMCID: PMC6722648 DOI: 10.3390/md17080482
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1The structures of compounds 1–7.
1H NMR (600 MHz) data of 1–4.
| Position | δH, Mult. ( | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1 a | 2 b | 3 b | 4 b | |||||||||
| 2 | 8.90 | d | (7.4) | 9.05 | d | (7.4) | 8.94 | d | (7.9) | |||
| 3 | 8.15 | t | (7.4) | 8.02 | t | (7.4) | 8.02 | t | (7.9) | |||
| 4 | 8.70 | d | (8.6) | 8.45 | d | (8.6) | 8.48 | d | (9.2) | |||
| 7 | 7.98 | ovl c | 7.87 | d | (7.1) | 7.78 | d | (6.9) | 7.94 | ovl c | ||
| 8 | 7.99 | ovl c | 7.92 | t | (7.1) | 7.83 | t | (6.9) | 7.96 | ovl c | ||
| 9 | 8.23 | d | (7.7) | 8.17 | d | (8.5) | 8.19 | d | (8.2) | 8.14 | d | (8.4) |
| 1’ | 6.06 | q | (6.4) | 5.78 | q | (6.6) | 5.71 | q | (6.5) | 5.82 | q | (6.5) |
| 2’ | 1.81 | d | (6.4) | 1.84 | d | (6.6) | 1.81 | d | (6.5) | 1.78 | d | (6.5) |
| 3” | 7.89 | d | (7.6) | |||||||||
| 4” | 6.49 | t | (7.6) | |||||||||
| 5” | 7.03 | t | (8.0) | |||||||||
| 6” | 6.42 | d | (8.0) | |||||||||
| 1-CO | 15.60 b | s | 15.44 | s | ||||||||
| 1-CO | 10.69 | br s | ||||||||||
| 6.29 | br s | |||||||||||
a, b Spectra were recorded in CD3OD and CDCl3, respectively. c Signals were overlapped with other signals.
13C NMR (150 MHz) data of 1–4.
| Position | δC, Type | |||||||
|---|---|---|---|---|---|---|---|---|
| 1 a | 2 b | 3 b | 4 b | |||||
| 1 | 126.6 c,f | C | 129.2 d | C | 124.9 e | C | ||
| 2 | 137.8 f | CH | 136.3 | CH | 137.6 | CH | ||
| 3 | 131.5 | CH | 130.3 | CH | 130.6 | CH | ||
| 4 | 136.6 f | CH | 134.3 | CH | 135.1 | CH | ||
| 4a | 143.9 c,f | C | 141.8 d | C | 141.8 e | C | ||
| 5a | 143.7 f | C | 142.5 | C | 141.0 | C | 142.4 | C |
| 6 | 145.6 | C | 143.3 | C | 142.8 | C | 144.0 | C |
| 7 | 128.7 | CH | 127.4 | CH | 127.7 | CH | 127.9 | CH |
| 8 | 134.7 f | CH | 131.9 | CH | 131.4 | CH | 133.4 | CH |
| 9 | 128.3 | CH | 128.5 | CH | 128.6 | CH | 127.2 | CH |
| 9a | 144.8 f | C | 143.1 | C | 141.4 | C | 140.4 | C |
| 10a | 141.0 | C | 140.8 | C | 139.9 | C | ||
| 1’ | 49.5 g | CH | 68.8 | CH | 68.9 | CH | 68.0 | CH |
| 2’ | 24.3 | CH3 | 23.9 | CH3 | 23.8 | CH3 | 24.1 | CH3 |
| 1” | 172.4 f | C | ||||||
| 2” | 112.2 | C | ||||||
| 3” | 133.4 f | CH | ||||||
| 4” | 116.1 | CH | ||||||
| 5” | 135.3 | CH | ||||||
| 6” | 113.3 | CH | ||||||
| 7” | 151.5 | C | ||||||
| 1-COOH | 168.6 f | C | 166.0 | C | ||||
| 1-CONH2 | 166.5 f | C | ||||||
a, b Spectra were recorded in CD3OD and CDCl3, respectively. c–e Assignments interchangeable. f Chemical shifts were obtained from the HMBC spectrum. g Chemical shift was overlapped with solvent signals.
Figure 2The Key COSY and HMBC correlations of 1–3.
Figure 3Semi-synthesis of 1.
Figure 4Effects of 1–7 on production of nitric oxide (NO) in LPS-induced macrophage RAW 264.7 cells (A) and cell viability of RAW 264.7 cells (B).
Effective Concentrations (EC50, μg/mL and μM) of 1–7 against NO assay.
| Compounds | ||||||||
|---|---|---|---|---|---|---|---|---|
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | ||
| EC50 | (μg/mL) | 18.10 | >30 | 14.67 | 6.15 | 17.06 | 5.53 | 5.32 |
| (μM) | 46.8 | - | 54.7 | 22.9 | 76.1 | 19.6 | 20.0 | |