| Literature DB >> 34070447 |
Guangyuan Luo1, Li Zheng1, Qilin Wu1, Senhua Chen1, Jing Li1,2, Lan Liu1,3,4.
Abstract
Six new fusarin derivatives, fusarins G-L (1-6), together with five known compounds (5-11) were isolated from the marine-derived fungus Fusarium solani 7227. The structures of the new compounds were elucidated by means of comprehensive spectroscopic methods (1D and 2D NMR, HRESIMS, ECD, and ORC) and X-ray crystallography. Compounds 5-11 exhibited potent anti-inflammatory activity by inhibiting the production of NO in RAW264.7 cells activated by lipopolysaccharide, with IC50 values ranging from 3.6 to 32.2 μM. The structure-activity relationships of the fusarins are discussed herein.Entities:
Keywords: Fusarium solani; anti-inflammatory activity; fusarins; marine-derived fungus
Mesh:
Substances:
Year: 2021 PMID: 34070447 PMCID: PMC8226964 DOI: 10.3390/md19060305
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structures of fusarin analogs.
Figure 2Structures of compounds 1–11..
1H NMR (400 MHz) and 13C NMR (100 MHz) data for 1 and 2 in CDCl3.
| No. | 1 | 2 | ||
|---|---|---|---|---|
| 1 | 16.0 CH3 | 1.78 (d, 1.4) | 14.7 CH3 | 1.82 (d, 7.2) |
| 2 | 142.2 CH | 7.08 (qd, 7.2, 1.1) | 140.3 CH | 6.9 (q, 7.2) |
| 3 | 129.3 C | 130.2 | ||
| 4 | 135.3 CH | 7.36 (m) | 30.1 CH2 | 2.72 (m, overlap) |
| 4′ | 2.4 (m) | |||
| 5 | 131.0 C | 38.9 CH | 2.72 (m, overlap) | |
| 6 | 172.8 C | 182.4 | ||
| 7 | 166.7 C | 168.1 | ||
| 8 | 52.2 OCH3 | 3.76 (s) | 51.9 OCH3 | 3.73 (s) |
| 9 | 14.3 CH3 | 1.76 (d, 1.4) | 16.7 CH3 | 1.16 (d, 6.6) |
Figure 3Structures of 1 and 2 with key COSY and HMBC correlations.
Figure 4ORTEP representation of the X-ray crystal structure of 1.
1H NMR (400 MHz) and 13C NMR (100 MHz) data for fusarins I (3) and J (4) in CDCl3.
| No. | 3 | 4 | ||
|---|---|---|---|---|
| 1 | 16.0 CH3 | 1.74 (d 7.3) | 14.6 CH3 | 1.92 (d 7.2) |
| 2 | 140.5 CH | 6.98 (q 7.1) | 141.1 CH | 7.05 (q 7.2) |
| 3 | 130.5 | 131.8 | ||
| 4 | 127.1 CH | 6.18 (s) | 71.8 CH | 5.06 (d 10.5) |
| 5 | 138.1 | 144.2 | ||
| 6 | 140.6 CH | 6.58 (m) | 123.7 CH | 6.28 (d 11.4) |
| 7 | 128.6 CH | 6.43 (dd 15.2, 10.3) | 137.5 CH | 6.86 (dd 14.7, 11.4) |
| 8 | 140.6 CH | 6.66(dd 14.6, 10.4) | 130.6 CH | 6.34 (dd 14.7, 11.2) |
| 9 | 127.9 CH | 6.55 (d 14.7) | 143.9 CH | 7.20 (dd 15.4, 11.1) |
| 10 | 140.9 CH | 7.37 (d 11.3) | 129.8 CH | 6.13 (d 15.4) |
| 11 | 126.0 | 198.6 | ||
| 12 | 173.6 | 27.5 CH3 | 2.27 (s) | |
| 13 | 167.7 | 167.8 | ||
| 14 | 52.1 OCH3 | 3.74 (s) | 52.1 OCH3 | 3.74 (s) |
| 15 | 14.4 CH3 | 1.70 (s) | 14.5 CH3 | 1.80 (d 1.3) |
| 16 | 12.5 CH3 | 1.98 (s) | ||
Figure 5Structures of fusarins I (3) and J (4) with key COSY and HMBC correlations.
1H NMR (400 MHz) and 13C NMR (100 MHz) data for fusarins K (5) and L (6) in CDCl3.
| No. | 5 | 6 | ||
|---|---|---|---|---|
| 1 | 16.1 CH3 | 1.75 (dd 7.2, 1.4) | 16.1 CH3 | 1.73 (dd 7.2, 1.3) |
| 2 | 140.6 CH | 6.99 (q 7.5) | 140.6 CH | 6.97 (m) |
| 3 | 130.5 | 130.3 | ||
| 4 | 127.5 CH | 6.20 (s) | 128.1 CH | 6.2 (s) |
| 5 | 138.2 C | 138.2 | ||
| 6 | 141.1 CH | 6.59 (m) | 142.4 CH | 6.60 (m) |
| 7 | 128.6 CH | 6.4 (dd 15.2, 9.7) | 128.6 CH | 6.43 (dd 15.2, 10.9) |
| 8 | 141.05 CH | 6.56 (m) | 143.9 | 6.80 (dd 14.6, 10.8) |
| 9 | 128.4 CH | 6.63 (m) | 128.2 CH | 6.64 (m) |
| 10 | 139.7 CH | 7.09 (d 8.9) | 146.0 CH | 7.50 (d 11.4) |
| 11 | 135.3 | 133.8 | ||
| 12 | 196.9 | 190.5 | ||
| 13 | 75.9 CH | 4.06 (dd 5.3, 3.5) | 62.7 | |
| 14 | 39.72 CH2 | 3.13 (dd 17.5, 5.4) | 64.1 CH | 3.94 (d 2.4) |
| 3.37 (dd 17.5 3.5) | ||||
| 15 | 216.2 | 83.9 | ||
| 16 | 36.7 CH2 | 2.54 (ddd 17.9, 7.6, 4.3) | 170.6 | |
| 2.87 (dt 17.9, 8.9) | ||||
| 17 | 65.3 CH2 | 4.13 (q 7.9) | 21.8 CH3 | 1.55 (s) |
| 4.37 (td 9.1, 4.3) | ||||
| 18 | 167.7 | 167.6 | ||
| 19 | 52.1 OCH3 | 3.75 (s) | 52.1 | 5.28 (s) |
| 20 | 14.4 CH3 | 1.71 (d 1.2) | 14.3 CH3 | 1.68 (s) |
| 21 | 11.8 CH3 | 1.91 (d 1.2) | 11.5 | 1.92 (s) |
Figure 6Structures of fusarins K (5) and L (6) with key COSY and HMBC correlations.
Figure 7Experimental ECD spectrum of 6 (green) in methanol with computed spectra of the enantiomers 13R, 14R, and 15R and 13R, 14R, and 15S at the b3lyp/6-31+g(d,p) level of theory. Red dotted line: 13R, 14R, and 15R; purple dotted line: 13R, 14R, and 15S.
Inhibitory activity of all compounds 1–11 against lipopolysaccharide (LPS)-induced NO production in the murine macrophage cell line (RAW 264.7 cells).
| Compounds | IC50 (μM) |
|---|---|
|
| >50 |
|
| 22.3 ± 5.0 |
|
| 13.1 ± 6.8 |
|
| 13.9 ± 7.5 |
|
| 21.9 ± 9.8 |
|
| >50 |
|
| 32.2 ± 5.7 |
|
| 17.8 ± 4.9 |
|
| 7.6 ± 2.0 |
|
| 3.6 ± 2.2 |
|
| 8.4 ± 2.2 |
| Indometacin a | 32.1 ± 2.5 |
a Positive control.