| Literature DB >> 25068785 |
Lene M Petersen1, Casper Hoeck2, Jens C Frisvad3, Charlotte H Gotfredsen4, Thomas O Larsen5.
Abstract
Investigation of the chemical profile of the industrially important blackEntities:
Mesh:
Substances:
Year: 2014 PMID: 25068785 PMCID: PMC6271215 DOI: 10.3390/molecules190810898
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Base peak chromatogram illustrating the dereplication of some of the major compounds in the extract from A. aculeatus IBT 21030 as well as the results of purification and structural elucidation of novel compounds. Based on cultivation on YES media for 7 days at 25 °C in the dark. * Novel compounds reported here for the first time. ** Compounds reported from A. aculeatus for the first time.
Figure 2Known compounds dereplicated from A. aculeatus. Okaramines A and H as well as secalonic acids have previously been reported from the organism, whereas the calbistrins and okaramine J are reported from A. aculeatus for the first time.
Figure 3UV-spectra of selected A. aculeatus metabolites. The remaining UV spectra can be found in the Supporting Information.
Figure 4The structure of aculenes A–D. The structures of aculenes A–C have been verified by 1D and 2D NMR spectroscopy, whereas the structure of aculene D has been suggested based on UHPLC-DAD-HRMS data. The stereochemistry shown is relative.
Figure 5A. Important HMBC correlations in the elucidation of aculene B. B. The NOEs used to solve the stereochemistry. Similar HMBCs and NOEs were observed for aculenes A and C, see Table 1 and Supplementary Table S2.
1H-NMR spectroscopic data (500 and 800 MHz, DMSO-d) and HMBCs for aculenes A–C.
| Aculene A | Aculene B | Aculene C | ||||||
|---|---|---|---|---|---|---|---|---|
| Position | δH ( | HMBC | δH ( | HMBC | δH ( | HMBC | ||
| - | - | - | - | |||||
| 3.15 (m) | - | 3.21 (m) | 3,4,5 | |||||
| 3.09 (m) | - | 3.14 (m) | 3,4,5 | |||||
| 1.83 (m) | - | 1.84 (m) | 2,4,5 | |||||
| 1.67 (m) | - | 1.76 (m) | 2,4,5 | |||||
| 1.94 (m) | 2,6 | 2.05 (m) | 2,3,5,6 | |||||
| 1.46 (m) | 2,6 | 1.55 (m) | 2,6 | |||||
| 4.23 (t 7.7) | 6 | 4.31 (t 7.8) | 2,3,4,6 | |||||
| - | - | - | - | |||||
| 5.33 (dd 4.4, 2.4) | - | 5.28 (dd 5.3, 2.3) | 6,9,12,16 | 3.95 (t 3.5) | 9,13,15 | |||
| 2.82(br.d 20.8) | - | 2.67 (br. d 19.1) | 16 | 2.52 (br. d 20.1) | ||||
| 2.55 (m) | 9,10,16 | 2.37 (m) | 7,9,10,16 | 2.31 (m) | 7,9,10,16 | |||
| - | - | - | - | - | - | |||
| 5.98 (d 7.4) | 8,12,18 | 5.56 (m) | 8,11,12,18 | 5.87 (d 7.3) | 8,12,18 | |||
| 6.24 (d 7.4) | 9,13,16 | 2.12 (m) | - | 6.08 (d 7.4) | 9,13,16 | |||
| - | - | 2.52 (m) | 18 | - | - | |||
| - | - | 3.31 (m) | 10,11,14 | - | - | |||
| - | - | - | - | - | - | |||
| 6.03 (s) | 12,13,15,16,19 | 5.81 (q 1.8) | 12,13,15,16,19 | 5.93 (s) | 12,13,15,16,19 | |||
| - | - | - | - | - | - | |||
| - | - | - | - | - | - | |||
| 0.96 (s) | 7,12,15,16 | 0.96 (s) | 7,12,15,16 | 0.79 (s) | 7,12,15,16 | |||
| 1.85 (s) | 8,9,10 | 1.68 (s) | 8,9,10 | 1.82 (s) | 8, 9,10 | |||
| 2.55 (m) | 13,20 | 2.39 (m) | 13,14,20 | 2.48 (m) | 12,13,14,20 | |||
| 1.16 (t 7.4) | 13,19 | 1.11 (t 7.3) | 13,19 | 1.14 (t 7.4) | 13,19 | |||
| - | - | - | - | 4.43 (s) | - | |||
13C-NMR spectroscopic data (125 and 200 MHz, DMSO-d) for aculenes A–C.
| Position | Aculene A | Aculene B | Aculene C |
|---|---|---|---|
| δC | δC | δC | |
| - | - | - | |
| 45.1 | 44.7 | - | |
| 22.3 | 22.3 | - | |
| 27.6 | 27.6 | - | |
| 58.4 | 58.3 | - | |
| 168.0 | 167.8 | - | |
| 72.9 | 73.5 | 67.6 | |
| 36.5 | 35.5 | 40.2 | |
| 141.7 | 130.7 | 142.5 | |
| 120.0 | 122.7 | 119.7 | |
| 118.5 | 24.9 | 117.8 | |
| 142.5 | 44.6 | 144.3 | |
| 175.3 | 183.8 | 174.3 | |
| 125.3 | 122.8 | 125.6 | |
| 205.8 | 208.2 | 208.2 | |
| 51.7 | 54.4 | 53.6 | |
| 17.9 | 17.1 | 18.3 | |
| 26.9 | 28.3 | 27.1 | |
| 20.1 | 23.1 | 19.8 | |
| 12.0 | 10.8 | 11.8 |
Figure 6Mass spectra of acucalbistrin A (top) and acucalbistrin B (bottom). A fragment corresponding to m/z of the molecular ion [M+H]+ of aculene A (*) and aculene B (**) are observed for acucalbistrin A and B respectively.
Figure 7The structure of acu-dioxomorpholine, okaramine S and epi-10,23-dihydro-24,25-dehydroaflavinine.
NMR spectroscopic data (500 and 800 MHz, DMSO-d) for acu-dioxomorpholine.
| Position | δH ( | δC | HMBC | Noesy |
|---|---|---|---|---|
| 1 | - | 168.0 | - | - |
| 2 | 2.96 (3H, s) | 32.7 | 6, 8 | 6,9 |
| 3 | 5.32 (1H, dd, 8.8, 3.4) | 78.1 | 4, 22, 23 | 16, 22, 22', 24/28 |
| 4 | - | 163.5 | - | - |
| 5 | - | - | - | - |
| 6 | 5.43 (1H, s) | 81.9 | 2, 4, 8, 13, 14, 15, 16, 17 | 12, 18, 19, 19', 20, 22 |
| 7 | - | - | - | - |
| 8 | - | 150.8 | - | - |
| 9 | 6.44 (1H, d, 7.6) | 105.6 | 11, 13 | 2, 10 |
| 10 | 7.09 (1H, td, 7.6, 0.8) | 128.5 | 8, 12 | 9, 11 |
| 11 | 6.64 (1H, t, 7.3) | 116.9 | 9, 12, 13 | 10, 12 |
| 12 | 7.17 (1H, d, 7.3) | 124.1 | 8, 10, 14 | 11, 15, 18, 20, 21 |
| 13 | - | 128.8 | - | - |
| 14 | - | 59.6 | - | - |
| 15 | 2.43 (1H, dd, 12.7, 6.6) | 36.6 | 1, 6, 13, 14, 16 | 12, 15', 16 |
| 15' | 2.21 ( 1H, dd, 12.7, 11.1) | 36.6 | 1, 13, 14, 16 | 15, 16, 18, 20, 21 |
| 16 | 4.17 (1H, dd, 11.1, 6.6) | 56.7 | 1, 15 | 3, 15, 15' |
| 17 | - | 40.1 | - | - |
| 18 | 5.87 (1H, dd, 17.4, 11.0) | 143.3 | 14, 17, 21 | 6, 12, 15', 19, 19', 20, 21 |
| 19 | 5.02 (1H, dd, 17.4, 1.1) | 113.7 | 14, 17, 18 | 6, 18, 19', 20, 21 |
| 19' | 5.06 (1H, dd, 11.0, 1.1) | 113.6 | 14, 17, 18 | 6, 18, 19, 20, 21 |
| 20 | 0.82 (3H, s) | 22.4 | 14, 17, 18, 21 | 6, 12, 15', 18, 19, 19', 21 |
| 21 | 0.97 (3H, s) | 21.7 | 14, 17, 18, 20 | 12, 15', 18, 19, 19', 20 |
| 22 | 2.98 (1H, dd, 14.8, 8.8) | 34.9 | 3, 4, 23, 28 | 3, 6, 22', 24/28 |
| 22' | 3.33 (1H, m) | 34.9 | 3, 4, 23, 28 | 3, 22, 24/28 |
| 23 | - | 136.3 | - | - |
| 24 | 7.26 (1H, m) | 129.2 | 22, 26, 28 | 3, 22, 22' |
| 25 | 7.28 (1H, m) | 127.7 | - | 26 |
| 26 | 7.22 (1H, tt, 7.2, 1.6) | 126.2 | 28 | 25 |
| 27 | 7.28 (1H, m) | 127.7 | 23, 25 | - |
| 28 | 7.26 (1H, m) | 129.2 | - | 3, 22, 22' |
NMR spectroscopic data (500 and 800 MHz, DMSO-d) for okaramine S.
| Position | δH ( | δC | Hmbc | Noesy |
|---|---|---|---|---|
| 1 | 7.64 (1H, s) | 114.7 | 2, 4, 14, 15 | - |
| 2 | - | 123.8 | - | - |
| 4 | - | 137.6 | - | - |
| 5 | 4.26 (1H, q, 6.5) | 43.2 | 4, 14, 18 | 18 |
| 6 | - | 51.2 | - | - |
| 7 | 5.87 (1H, s) | - | 5, 9, 13, 17 | 9 |
| 8 | - | 144.5 | - | - |
| 9 | 6.90 (1H, d, 7.6) | 118.8 | 11, 13 | 10 |
| 10 | 6.99 (1H, t, 7.6) | 127.4 | 8, 12 | 9 |
| 11 | 6.65 (1H, t, 7.6) | 116.8 | 9, 13 | 12 |
| 12 | 7.74 (1H, d, 7.6) | 128.3 | 8, 10, 14 | 1,11 |
| 13 | - | 115.3 | - | - |
| 14 | - | 124.9 | - | - |
| 15 | - | 153.4 | - | - |
| 16 | 0.95 (3H, s) | 27.1 | 5, 6, 17 | 17 |
| 17 | 1.39 (3H, s) | 29.3 | 5, 6, 16 | 16 |
| 18 | 1.18 (3H, d, 7.2) | 18.1 | 4, 5, 6 | - |
| 19 | 7.76 (1H, s) | 117.5 | 20, 25, 32, 33, 34 | - |
| 20 | - | 125.2 | - | - |
| 22 | 5.90 (1H, d, 8.3) | 123.6 | 23, 24 | 23 |
| 23 | 6.15 (1H, d, 8.3) | 140.2 | 22, 24, 35/36 | 22 |
| 24 | - | 35.8 | - | - |
| 25 | - | 149.8 | - | - |
| 26 | 11.70 (1H, s) | - | 25, 32, 33 | - |
| 27 | - | 134.2 | - | - |
| 28 | 7.44 (1H, m) | 112.3 | - | 29/30 |
| 29 | 7.17 (1H, m) | 121.7 | 31 | 28, 31 |
| 30 | 7.17 (1H, m) | 121.7 | 31 | 28, 31 |
| 31 | 7.63 (1H, m) | 116.1 | 27, 29/30 | 12, 29/30 |
| 32 | - | 105.3 | - | - |
| 33 | - | 129.5 | - | - |
| 34 | - | 157.6 | - | - |
| 35 | 1.69 (3H, s) | 26.7 | 23, 24, 25, 35/36 | - |
| 36 | 1.69 (3H, s) | 26.7 | 23, 24, 25, 35/36 | - |
NMR spectroscopic data (500 MHz, DMSO-d) for epi-10,23-dihydro-24,25-dehydroaflavinine.
| Position | δH ( | δC | HMBC | H2BC | NOESY |
|---|---|---|---|---|---|
| 1 | 10.66 (s) | - | 2, 3, 4, 9 | 2 | 2,8 |
| 2 | 7.07 (d 2.0) | 122.7 | 3, 4, 9 | - | 1, 23, 25, 27 |
| 3 | - | 114.4 | - | - | |
| 4 | - | 126.7 | - | - | |
| 5 | 7.38 (d 7.8) | 116.8 | 7, 9 | 6 | 10, 11, 18 |
| 6 | 6.96 (t 7.2) | 117.7 | 4, 8 | 5, 7 | |
| 7 | 7.02 (t 7.3) | 120.0 | 5, 9 | 6, 8 | |
| 8 | 7.29 (d 8.0) | 110.9 | 4, 6 | 7 | 1 |
| 9 | - | 135.5 | - | - | |
| 10 | 3.59 (dd 13.3, 5.0) | 33.4 | 2, 3, 11, 12, 23, 24 | 11, 23 | 5, 11, 19, 25, 26 |
| 11 | 2.47 (m) | 37.6 | 10, 12, 23 | 10, 12 | 5, 10, 12, 13, 16, 19 |
| 12 | 1.27 (m) | 28.9 | - | 17 | 11 |
| 13 | 1.53 (m) | 28.1 | 29 | - | 11, 13', 16 |
| 13' | 0.81 (d 12.9) | 28.1 | - | - | 13 |
| 14 | 1.46 (m) | 27.4 | - | - | |
| 14' | 1.08 (d 13.7) | 27.4 | 27 | - | 28 |
| 15 | - | 38.2 | - | - | |
| 16 | 2.04 (m) | 30.4 | - | 17, 28 | 11, 13, 17', 28 |
| 17 | 1.71 (m) | 24.8 | - | 18 | |
| 17' | 1.22 (m) | 24.8 | - | - | |
| 18 | 1.99 (d 11.3) | 29.6 | - | - | 5, 19 |
| 18' | 1.74 (m) | 29.6 | - | - | 19, 30 |
| 19 | 4.64 (s) | 65.6 | - | - | 10, 11, 18, 18', 22, 26 |
| 20 | - | 42.9 | - | - | |
| 21 | 2.07 (m) | 23.5 | - | - | 29, 30 |
| 21' | 1.65 (m) | 23.5 | 19, 23 | - | 27 |
| 22 | 1.85 (m) | 26.6 | 20, 24 | 21, 23 | 19, 30 |
| 22' | 1.54 (m) | 26.6 | - | - | |
| 23 | 3.13 (m) | 42.3 | 24, 25, 26 | 10, 22 | 2, 25, 27 |
| 24 | - | 149.8 | - | - | |
| 25 | 4.81 (d 1.8) | 110.4 | 23, 26 | 26 | 2, 10, 23, 25' |
| 25' | 4.58 (d 1.8) | 110.4 | 23, 26 | 26 | 25, 26 |
| 26 | 1.45 (s) | 17.7 | 23, 24, 25 | - | 10, 19, 25' |
| 27 | 1.21 (s) | 21.1 | 11, 12 | 12 | 2, 21', 23 |
| 28 | 0.71 (d 6.7) | 15.4 | 15, 16, 17 | 16 | 14', 16, 17' |
| 29 | 0.92 (s) | 17.7 | 13, 15, 16, 20 | - | 17, 21, 30 |
| 30 | 4.28 (d 4.3) | - | 19, 20 | 19 | 18', 21, 22, 29 |
Figure 8Key HMBCs substantiating the seven-membered ring in okaramine S.
Figure 9The figure shows production of sclerotia on YES (left) and CYA media (right) after growth for 7 days at 25 °C in the dark. The sclerotia are the white to cream-colored structures seen among the black conidial Aspergillus heads.
Figure 10Base peak chromatograms of extraction from sclerotia (top) and plug extractions of A. aculeatus IBT 21030 after cultivation on YES agar for 7 days at 25 °C in the dark (bottom) for reference. The chromatograms are to scale. Stars indicate okaramines produced in the sclerotium extract.