| Literature DB >> 35628798 |
Bing-Chao Yan1,2,3, Wei-Guang Wang1,2, Ling-Mei Kong1,2, Jian-Wei Tang1,2,3, Xue Du1,2,3, Yan Li1,2, Pema-Tenzin Puno1,2,3.
Abstract
Cytochalasans from the endophytic fungi featured structure diversity. Our previous study has disclosed that cytochalasans from the endophytic fungus Phomopsis sp. shj2 exhibited an antimigratory effect. Further chemical investigation on Phomopsis sp. shj2 has led to the discovery of seven new cytochalasans (1-7), together with four known ones. Their structures were elucidated through extensive spectroscopic data interpretation and single-crystal X-ray diffraction analysis. Compounds 1-3 and 8-11 exhibited antimigratory effects against MDA-MB-231 in vitro with IC50 values in the range of 1.01-10.42 μM.Entities:
Keywords: Phomopsis; antimigratory activity; cytochalasan; endophytic fungus
Year: 2022 PMID: 35628798 PMCID: PMC9143583 DOI: 10.3390/jof8050543
Source DB: PubMed Journal: J Fungi (Basel) ISSN: 2309-608X
Figure 1Structures of compounds 1–11.
1H NMR data (CDCl3, δ in ppm) of compounds 1–7.
| No. | 1 a,b | 2 a,c | 3 c,d | 4 a,c | 5 a,c | 6 a,e | 7 a,c |
|---|---|---|---|---|---|---|---|
| 3 | 3.25 (m) | 3.26 (m) | 3.33 (m) | 3.27 (m) | 3.23 (dt, 9.4, 4.3) | 3.54 (dt, | 3.28 (overlap) |
| 4 | 2.15 (m) | 2.14 (m) | 2.65 (m) | 2.58 (m) | 2.35 (t, 4.3) | 2.25 (t, 4.2) | 2.19 (t, 4.3) |
| 5 | 2.76 (m) | 2.78 (m) | 2.72 (m) | 2.90 (m) | 3.08 (m) | 2.11 (m) | 2.53 (m) |
| 6 | 2.01 (m) | ||||||
| 7 | 3.84 (d, 10.5) | 3.83 (d, 10.5) | 3.79 (d, 10.5) | 3.82 (d, 10.5) | 5.72 (s) | ||
| 8 | 2.93 (d, 10.5) | 2.96 (d, 10.5) | 2.94 (d, 10.5) | 2.90 (d, 10.5) | 3.94 (d, 9.3) | 3.79 (d, 9.4) | 3.26 (overlap) |
| 10 | 2.85 (dd, 13.5, 4.5) | 2.86 (dd, 13.3, 3.8) | 2.81 (m) | 2.58 (m) | 2.90 (dd, 13.5, 4.3) | 2.92 (dd, 13.5, 4.3) | 2.91 (dd, 13.5, 4.3) |
| 11 | 0.99 (d, 6.7) | 1.01 (d, 6.7) | 0.84 (d, 6.8) | 1.10 (d, 6.7) | 1.12 (d, 6.7) | 0.98 (d, 6.7) | 1.17 (d, 7.3) |
| 12 | 5.33 (s) | 5.35 (s) | 5.18 (s) | 5.32 (s) | 6.25 (s) | 1.12 (d, 7.0) | 4.53 (d, 12.8) |
| 13 | 5.74 (dd, 15.5, 9.7) | 5.73 (dd, 15.1, 10.0) | 5.70 (dd, 15.0, 9.2) | 5.71 (dd, 15.5, 9.8) | 5.81 (dd, 15.6, 9.3) | 5.69 (dd, 15.5, 9.4) | 5.84 (dd, 15.3, 10.3) |
| 14 | 5.38 (m) | 5.43 (m) | 5.22 (m) | 5.35 (m) | 5.19 (m) | 5.16 (m) | 5.24 (m) |
| 15 | 2.01 (overlap) | 2.00 (overlap) | 1.90 (dd, 13.9, 3.1) | 1.98 (dd, 10.4, 4.7) | 2.04 (dd, 12.9, 4.4) | 2.01 (m) | 1.99 (m) |
| 16 | 1.65 (m) | 1.78 (m) | 1.66 (m) | 1.75 (m) | 1.76 (m) | 1.75 (m) | 1.75 (m) |
| 17 | 2.05 (dd, 14.3, 3.7), | 1.69 (m) | 1.90 (m) | 1.78 (overlap) | 1.85 (overlap) 1.54 (dd, 14.3, 3.2) | 1.85 (m) | 1.88 (dd, 14.3, 2.7) |
| 19 | 5.56 (d, 16.6) | 5.52 (d, 16.7) | 5.84 (d, 16.7) | 5.73 (d, 16.7) | 5.52 (d, 16.6) | 5.49 (d, 16.6) | 5.52 (d, 16.6) |
| 20 | 5.85 (dd, 16.6, 2.3) | 5.79 (dd, 16.7, 2.4) | 5.97 (dd, 16.7, 2.2) | 5.99 (dd, 16.7, 2.6) | 5.90 (dd, 16.6, 2.6) | 5.85 (dd, 16.6, 2.5) | 5.91 (dd, 16.6, 2.6) |
| 21 | 5.63 (t, 2.3) | 5.54 (t, 2.4) | 4.02 (t, 2.2) | 4.12 (t, 2.6) | 5.65 (t, 2.6) | 5.60 (t, 2.5) | 5.68 (t, 2.6) |
| 22 | 1.02 (d, 6.9) | 1.01 (d, 6.5) | 0.99 (d, 6.3) | 1.01 (d, 6.3) | 1.04 (d, 7.0) | 1.03 (d, 6.9) | 1.04 (d, 6.3) |
| 23 | 1.58 (s) | 1.26 (s) | 1.53 (s) | 1.28 (s) | 1.34 (s) | 1.32 (s) | 1.34 (s) |
| 2′, 6′ | 7.14 (d, 7.4) | 7.15 (d, 7.4) | 7.21 (d, 7.3) | 7.15 (d, 7.4) | 7.12 (d, 7.4) | 7.15 (d, 7.3) | 7.14 (d, 7.2) |
| 3′, 5′ | 7.31 (t, 7.4) | 7.32 (t, 7.4) | 7.29 (t, 7.3) | 7.31 (t, 7.4) | 7.32 (t, 7.4) | 7.33 (t, 7.3) | 7.31 (t, 7.5) |
| 4′ | 7.25 (t, 7.4) | 7.25 (t, 7.4) | 7.26 (d, 7.3) | 7.24 (t, 7.4) | 7.25 (t, 7.4) | 7.25 (t, 7.3) | 7.24 (t, 7.2) |
| 12-OAc | 2.04, s | ||||||
| 18-OR | R = Ac | R = Et | R = Ac | R = Et | R = H | R = H | R = H |
| 21-OAc | 2.24 (s) | 2.25 (s) | 2.30 (s) | 2.28 (s) | 2.25 (s) |
a Recorded in CDCl3. b Recorded at 800 MHz. c Recorded at 600 MHz. d Recorded in acetone-d6. e Recorded at 500 MHz.
13C NMR data (CDCl3, δ in ppm) of compounds 1–7.
| No. | 1 a,b | 2 a,c | 3 d,e | 4 a,e | 5 a,e | 6 a,f | 7 a,e |
|---|---|---|---|---|---|---|---|
| 1 | 174.3 s | 174.3 s | 176.7 s | 175.8 s | 172.8 s | 173.5 s | 174.9 s |
| 3 | 53.9 d | 53.9 d | 54.2 d | 50.6 d | 54.0 d | 53.3 d | 56.1 d |
| 4 | 50.5 d | 50.9 d | 50.2 d | 53.9 d | 50.6 d | 51.1 d | 53.8 d |
| 5 | 33.0 d | 33.0 d | 33.8 d | 33.1 d | 34.2 d | 35.7 d | 34.7 d |
| 6 | 148.0 s | 148.0 s | 152.1 s | 148.6 s | 143.9 s | 45.8 d | 135.8 s |
| 7 | 70.0 d | 69.9 d | 71.6 d | 70.1 d | 198.7 s | 214.0 s | 134.6 d |
| 8 | 47.3 d | 47.4 d | 46.8 d | 46.0 d | 53.1 d | 52.0 d | 43.4 d |
| 9 | 52.1 s | 51.9 s | 54.5 s | 53.0 s | 52.9 s | 53.6 s | 56.2 s |
| 10 | 45.7 t | 45.8 t | 45.5 t | 45.8 t | 46.0 t | 46.3 t | 46.1 t |
| 11 | 14.1 q | 14.2 q | 14.2 q | 14.1 q | 14.4 q | 15.9 q | 13.2 q |
| 12 | 114.3 t | 114.3 t | 112.0 t | 113.9 t | 121.0 t | 16.0 q | 64.9 t |
| 13 | 127.6 d | 127.2 d | 130.2 d | 128.0 d | 123.0 d | 123.2 d | 128.3 d |
| 14 | 138.2 d | 138.6 d | 135.7 d | 137.8 d | 138.4 d | 137.9 d | 136.3 d |
| 15 | 42.7 t | 43.1 t | 43.7 t | 42.8 t | 43.1 t | 42.9 t | 42.8 t |
| 16 | 28.6 d | 28.0 d | 29.2 d | 27.8 d | 28.6 d | 28.5 d | 28.7 d |
| 17 | 51.5 t | 51.8 t | 52.9 t | 51.1 t | 53.7 t | 53.5 t | 53.5 t |
| 18 | 84.4 s | 78.5 s | 85.0 s | 78.5 s | 74.6 s | 74.5 s | 74.6 s |
| 19 | 136.6 d | 138.9 d | 135.1 d | 137.3 d | 137.7 d | 137.7 d | 137.3 d |
| 20 | 124.9 d | 125.8 d | 131.8 d | 130.8 d | 125.9 d | 125.9 d | 126.5 d |
| 21 | 77.4 d | 78.1 d | 76.7 d | 77.0 d | 77.9 d | 77.8 d | 77.0 d |
| 22 | 25.5 q | 26.2 q | 25.9 q | 26.0 q | 26.6 q | 26.6 q | 26.6 q |
| 23 | 26.3 q | 25.2 q | 27.0 q | 25.2 q | 31.5 q | 31.4 q | 31.6 q |
| 1′ | 137.5 s | 137.6 s | 138.9 s | 137.7 s | 137.0 s | 137.1 s | 137.7 s |
| 2′, 6′ | 129.1 d | 129.2 d | 130.8 d | 129.1 d | 129.2 d | 129.2 d | 129.1 d |
| 3′, 5′ | 129.1 d | 129.1 d | 129.2 d | 128.9 d | 129.1 d | 129.1 d | 129.0 d |
| 4′ | 127.2 d | 127.3 d | 127.4 d | 127.1 d | 127.4 d | 127.4 d | 127.3 d |
| 12-OR | 170.6 s, | ||||||
| 18-OR | R = Ac | R = Et | R = Ac | R = Et | R = H | R = H | |
| 21-OAc | 170.3 s, | 170.3 s, | 170.1 s, | 170.1 s, | 170.2 s, |
a Recorded in CDCl3. b Recorded at 100 MHz. c Recorded at 150 MHz. d Recorded in acetone-d6. e Recorded at 150 MHz. f Recorded at 125 MHz.
Figure 2Key HMBC (red arrows) and 1H-1H COSY (blue bold) correlations of compounds 1–7.
Figure 3Key ROESY correlations of compounds 1–7.
Figure 4X-ray crystallographic structures of compounds 1 and 3.
Antimigratory activities of the compounds against MDA-MB-231 in vitro.
| Compounds | IC50 (μM) | Compounds | IC50 (μM) |
|---|---|---|---|
| Cytochalasin D a | 0.78 |
| 1.25 |
|
| 3.14 |
| 7.31 |
|
| 10.42 |
| 1.01 |
|
| 6.38 |
| 6.41 |
|
| >25 |
a Positive control.