| Literature DB >> 31807212 |
Tian Cheng1, Clara Chepkirui1, Cony Decock2, Josphat C Matasyoh3, Marc Stadler1.
Abstract
During the course of screening for new metabolites from basidiomycetes, we isolated and characterized five previously undescribed secondary metabolites, skeletocutins M-Q (1-5), along with the known metabolite tyromycin A (6) from the fruiting bodies of the polypore Skeletocutis sp. The new compounds did not exhibit any antimicrobial, cytotoxic, or nematicidal activities. However, compound 3 moderately inhibited the biofilm formation of Staphylococcus aureus (S. aureus), while compounds 3 and 4 performed moderately in the ʟ-leucine-7-amido-4-methylcoumarin (ʟ-Leu-AMC) inhibition assay. These compounds represent the first secondary metabolites reported to occur in the fruiting bodies by Skeletocutis. Interestingly, tyromycin A (6) was found to be the only common metabolite in fruiting bodies and mycelial cultures of the fungus, and none of the recently reported skeletocutins from the culture of the same strain were detected in the basidiomes.Entities:
Keywords: basidiomycete; polyporaceae; secondary metabolites; structure elucidation
Year: 2019 PMID: 31807212 PMCID: PMC6880814 DOI: 10.3762/bjoc.15.270
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1HPLC–UV chromatogram of the extract from fruiting bodies of Skeletocutis sp. (detection wavelength λ = 190–600 nm).
1H and 13C NMR data for 1 (in acetone-d6) and 2 (in CDCl3).
| Position | 13C/DEPT | 1H | 13C/DEPT | 1H |
| 1/18 ( | 24.8, CH2 | 2.50 (t), | 24.4, CH2 | 2.46 (t), |
| 2/17 ( | 28.2, CH2 | 1.59 (p), | 27.6, CH2 | 1.58 (p), |
| 3–16 ( | 29.4–29.8, CH2 | 1.28–1.36 (m) | 29.2–29.7, CH2 | 1.26–1.32 (m) |
| 2’ | 167.1, C | 165.9, C | ||
| 3’ | 144.9, C | 144.8, C | ||
| 4’ | 141.7, C | 140.4, C | ||
| 5’ | 167.4, C | 166.3, C | ||
| 6’ | 9.6, CH3 | 2.08 (s) | 9.5, CH3 | 2.08 (s) |
Figure 2Chemical structures of compounds 1–6.
1H and 13C NMR data for 3 (in CDCl3) and compounds 4 and 5 (in DMSO-d6).
| Position | 13C/DEPT | 1H | 13C/DEPT | 1H | 13C/DEPT | 1H |
| 1 | 176.8, C | 174.5, C | 174.3, C | |||
| 2 | 32.1, CH2 | 3.37 (s) | 35.8, CH2 | 2.23 (dd), | 33.6, CH2 | 2.29 (dd), |
| 3 | 124.5, C | 39.6, CH | 3.86 (dd), | 42.8, CH | 2.83 (ddd), | |
| 4 | 148.9, CH | 7.13 (t), | 131.9, C | 46.1, CH | 2.50 (m)a | |
| 5 | 29.12, CH2 | 2.23 (m) | 144.7, CH | 6.74 (t), | 28.6, CH2 | 1.56 (m) |
| 6 | 28.3, CH2 | 1.48 (m) | 28.5, CH2 | 2.19 (q), | 28.6, CH2 | 1.35 (m) |
| 7 | 28.5, CH2 | 1.38 (m) | ||||
| 8–20 | 29.3–29.7, CH2 | 1.26–1.31 (m) | 29.1–29.5, CH2 | 1.23–1.26 (m) | 28.82–29.0, CH2 | 1.23–1.26 (m) |
| 21 | 27.6, CH2 | 1.58 (p), | 27.3, CH2 | 1.48 (p), | 26.9, CH2 | 1.49 (p), |
| 22 | 24.4, CH2 | 2.45 (t), | 24.1, CH2 | 2.39 (t), | 23.6, CH2 | 2.40 (t), |
| 23 | 172.0, C | 173.8, C | 172.9, C | |||
| 24 | 167.8, C | 174.7, C | ||||
| 2’ | 165.9, C | 166.7, C | 166.2, C | |||
| 3’ | 144.8, C | 143.9, C | 143.4, C | |||
| 4’ | 140.4, C | 141.3, C | 140.8, C | |||
| 5’ | 166.3, C | 166.9, C | 166.4, C | |||
| 6’ | 9.3, CH3 | 2.08 (s) | 9.7, CH3 | 1.99 (s) | 9.2, CH3 | 2.00 (s) |
aOverlapping signals.
Inhibition of ʟ-Leu-AMC hydrolysis by the metabolites 1–5.
| IC50 (μg/mL) | |||||||
| Substrate (c) | Bestatin [ | ||||||
| ʟ-Leu-AMC (50 µM) | – | – | 89.6 | 71.1 | 153.2 | 138.4 | 10.8 |
| ʟ-Leu-AMC (100 µM) | – | – | 130.4 | 102.3 | 225.3 | – | 40.9 |
Figure 3Inhibition Leu-AMC hydrolysis. a) c (ʟ-Leu-AMC) = 100 µM. b) c (ʟ-Leu-AMC) = 50 µM.