| Literature DB >> 26805856 |
Woo Jung Kim1, Young Ok Kim2, Jin Hee Kim3, Bo-Hye Nam4, Dong-Gyun Kim5, Cheul Min An6, Jun Sik Lee7, Pan Soo Kim8, Hye Min Lee9, Joa-Sup Oh10, Jong Suk Lee11.
Abstract
The ocean is a rich resource of flora, fauna, and food. A wild-type bacterial strain showing confluent growth on marine agar with antibacterial activity was isolated from marine water, identified using 16S rDNA sequence analysis as Pseudoalteromonas sp., and designated as strain M2. This strain was found to produce various secondary metabolites including quinolone alkaloids. Using high-resolution mass spectrometry (MS) and nuclear magnetic resonance (NMR) analysis, we identified nine secondary metabolites of 4-hydroxy-2-alkylquinoline (pseudane-III, IV, V, VI, VII, VIII, IX, X, and XI). Additionally, this strain produced two novel, closely related compounds, 2-isopentylqunoline-4-one and 2-(2,3-dimetylbutyl)qunoline-4-(1H)-one, which have not been previously reported from marine bacteria. From the metabolites produced by Pseudoalteromonas sp. M2, 2-(2,3-dimethylbutyl)quinolin-4-one, pseudane-VI, and pseudane-VII inhibited melanin synthesis in Melan-A cells by 23.0%, 28.2%, and 42.7%, respectively, wherein pseudane-VII showed the highest inhibition at 8 µg/mL. The results of this study suggest that liquid chromatography (LC)-MS/MS-based metabolite screening effectively improves the efficiency of novel metabolite discovery. Additionally, these compounds are promising candidates for further bioactivity development.Entities:
Keywords: Pseudoalteromonas; marine microbes; mass spectrometry; quinolone alkaloid; secondary metabolite
Mesh:
Substances:
Year: 2016 PMID: 26805856 PMCID: PMC4728520 DOI: 10.3390/md14010024
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Unrooted neighbor-joining phylogenetic tree based on 16S rDNA gene sequences showing the taxonomic positions of Pseudoalteromonas sp. M2 and type strains of closely related taxa. The degree of confidence for each branch point was determined by bootstrap analysis (1000 replicates). Reference strains have been included in the alignment. Bar, 0.005 accumulated changes per nucleotide.
Screening of secondary metabolites found in crude extracts of Pseudoalteromonas sp. M2.
| RT (min) | Compound | [M + H]+ ( | Formula | ∆ppm | MS/MS Fragment Ion | Ref. |
|---|---|---|---|---|---|---|
| 4.56 | Pseudane-III | 188.1070 | C12H14ON | −0.003 | 132, 146, 159, 170, 188 | |
| 5.32 | Pseudane-IV | 202.1227 | C13H16ON | 0.491 | 132, 146, 159, 172, 183, 202 | * |
| 5.99 | 2-isopentylquinolin-4-one | 216.1382 | C14H18ON | −0.188 | 132, 146, 159, 172, 186, 200, 216 | Novel |
| 6.09 | Pseudane-V | 216.1382 | C14H18ON | −0.188 | 132, 146, 159, 172, 186, 197, 216 | [ |
| 6.71 | 2-(2,3-dimethylbutyl) quinolin-4-one | 230.1539 | C15H20ON | 0.083 | 132, 146, 159, 172, 186, 200, 230 | Novel |
| 6.83 | Pseudane-VI | 230.1539 | C15H20ON | −0.090 | 132, 146, 159, 172, 186, 200, 230 | * |
| 7.55 | Pseudane-VII | 244.1695 | C16H22ON | −0.372 | 132, 146, 159, 172, 186, 200, 244 | [ |
| 8.29 | Pseudane-VIII | 258.1851 | C17H24ON | −0.701 | 132, 146, 159, 172, 186, 200, 258 | * |
| 9.00 | Pseudane-IX | 272.2007 | C18H26ON | −0.885 | 132, 146, 159, 172, 186, 200, 272 | [ |
| 9.67 | Pseudane-X | 286.2164 | C19H28ON | −0.131 | 146, 159, 172, 186, 200, 214, 286 | [ |
| 10.33 | Pseudane-XI | 300.2322 | C20H30ON | −0.001 | 146, 159, 172, 186, 200, 214, 300 | [ |
* Commercial source.
Figure 2Structures of 11 4-hydroxy-2-alkylquinolines (pseudane) series compounds identified from the culture broth of Pseudoalteromonas sp. M2.
Figure 3Ultra-high-pressure liquid chromatography (UHPLC)-high-resolution mass spectrophotometry (LC-HR-MS) analysis of the ethyl acetate extract from Pseudoalteromonas sp. M2. culture supernatant. (A) UHPLC chromatogram of ethyl acetate extract from Pseudoalteromonas sp. M2; (B) extracted mass chromatogram (XIC) of 11 4-quinolones. Pseudane-III (4.61 min), pseudane-IV (5.38 min), 2-isopentylquinolin-4-one (6.07 min) pseudane-V (6.14 min), 2-(2,3-dimethylbutyl)quinolin-4-one (6.75 min), pseudane-VI (6.89 min), pseudane-VII (7.60 min), pseudane-VIII (8.36 min), pseudane-IX (9.06 min), pseudane-X (9.72 min), and pseudane-XI (10.39 min); (C) high-resolution mass spectrum of 11 pseudane compounds. The molecular weight of 2-isopentylquinolin-4-one and pseudane-V as well as 2-(2,3-dimethylbutyl)quinolin-4-one and pseudane-VI were similar.
The NMR data of new compounds, recorded at 1H-400 MHz; 13C-100 MHz in Methanol-d4.
| No. C/H | δC ppm | δH (ppm), Integration, Multiplicity, J (Hz) |
|---|---|---|
| 1 (CH3) | 22.8 | 0.99 (3H, m, |
| 2 (CH3) | 22.8 | 0.99 (3H, m, |
| 5 (CH) | 29.2 | 1.67 (1H, m, |
| 3 (CH2) | 33.2 | 2.72 (2H, m, |
| 4 (CH2) | 39.3 | 1.63 (2H, m) |
| 6 (CH) | 108.8 | 6.22 (1H, s) |
| 7 (CH) | 119.2 | 7.58 (1H, ddd, |
| 8 (CH) | 125.2 | 7.38 (1H, d, |
| 11 (C) | 125.6 | |
| 9 (CH) | 126.11 | 8.20 (1H,dd, |
| 10 (CH) | 133.5 | 7.68 (1H, t, |
| 12 (C) | 141.7 | |
| 13 (C) | 157.5 | |
| 14 (C) | 180.8 | |
| 1 (CH3) | 15.2 | 0.86 (3H, d, |
| 2 (CH3) | 18.2 | 0.95 (3H, d, |
| 3 (CH3) | 20.6 | 0.97 (3H, d, |
| 5 (CH) | 33.4 | 1.69 (1H, d, |
| 4 (CH2) | 39.9 | 2.83 (1H, dd, |
| 6 (CH) | 40.5 | 1.89 (1H, m) |
| 7 (CH) | 109.8 | 6.21 (1H, s) |
| 8 (CH) | 119.2 | 7.39 (1H, t, |
| 9 (CH) | 125.2 | 7.59 (1H, d, |
| 12 (C) | 125.6 | |
| 10 (CH) | 126.1 | 8.21 (1H, d, |
| 11 (CH) | 133.5 | 7.68 (1H, m) |
| 13 (C) | 141.7 | |
| 14 (C) | 156.8 | |
| 15 (C) | 180.5 | |
Figure 4(A) Cell cytotoxicity and (B) inhibition of melanin synthesis in melan-a cells by eight main compounds produced by Pseudoalteromonas sp. M2. Melan-A cells were treated with compounds for 72 h and cell cytotoxicity was determined by CCK-8 cell assay. Each value is expressed as mean ± standard deviation (SD) from triplicate experiments. A: pseudane-IV, B: 2-isopentylquinolin-4-one, C: pseudane-V, D: 2-(2,3-dimethylbutyl)quinolin-4-one, E: pseudane-VI, F: pseudane-VII, G: pseudane-VIII, H: pseudane-IX.