| Literature DB >> 32993102 |
Bruno Perlatti1, Connie B Nichols2, J Andrew Alspaugh2, James B Gloer3, Gerald F Bills1.
Abstract
Sphaerostilbella toxica is a mycoparasitic fungus that can be found parasitizing wood-decay basidiomycetes in the southern USA. Organic solvent extracts of fermented strains of S. toxica exhibited potent antimicrobial activity, including potent growth inhibition of human pathogenic yeasts Candida albicans and Cryptococcus neoformans, the respiratory pathogenic fungus Aspergillus fumigatus, and the Gram-positive bacterium Staphylococcus aureus. Bioassay-guided separations led to the purification and structure elucidation of new peptaibiotics designated as sphaerostilbellins A and B. Their structures were established mainly by analysis of NMR and HRMS data, verification of amino acid composition by Marfey's method, and by comparison with published data of known compounds. They incorporate intriguing structural features, including an N-terminal 2-methyl-3-oxo-tetradecanoyl (MOTDA) residue and a C-terminal putrescine residue. The minimal inhibitory concentrations for sphaerostilbellins A and B were measured as 2 μM each for C. neoformans, 1 μM each for A. fumigatus, and 4 and 2 μM, respectively, for C. albicans. Murine macrophage cells were unaffected at these concentrations.Entities:
Keywords: Hypocreaceae; antifungals; mycoparasite; nonribosomal peptide; putrescine; secondary metabolite
Mesh:
Substances:
Year: 2020 PMID: 32993102 PMCID: PMC7600149 DOI: 10.3390/biom10101371
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Figure 1White superficial mycelium and conidia of Sphaerostilbella toxica parasitizing the lamellae of Gloeophyllum striatum. The type collection DPL-12808 (=NRRL 66954), from near Bleakwood (TX, USA), Texas. Photo by David P. Lewis.
1H- and 13C-NMR data for compound 1 in DMSO (500 and 125 MHz for 1H- and 13C-, respectively).
| Residue. | Position | δC | δH, mult (J in Hz) | Residue | Position | δC | δH, mult (J in Hz) |
|---|---|---|---|---|---|---|---|
| MOTDA | 1 | 169.40 | Aib9 | NH | 8.02, s | ||
| 2 | 50.83 | 3.80, q (6.9) | α | 55.85 | |||
| 2’ | 12.45 | 1.15, d (6.9) | β-1 | 23.13 | 1.39, m a | ||
| 3 | 206.39 | β-2 | 24.30 | 1.33, m a | |||
| 4 | 40.42 | 2.47, m | C=O | 174.08 | |||
| 5 | 22.84 | 1.40, m | β-Ala10 | NH | 7.44, t (5.5) | ||
| 6 | 22.04 | 1.22, m | α | 35.81 | a: 3.32, m; b: 3.14, m | ||
| 7 | 28.69 | 1.16, m | β | 35.09 | 2.29, m | ||
| 8 | 28.89 | 1.20, m | C=O | 171.18 | |||
| 9 | 28.95 | 1.21, m | L-Ala11 | NH | 8.12, d (4.8) | ||
| 10 | 28.82 | 1.24, m | α | 49.19 | 4.10, q (6.6) | ||
| 11 | 28.99 | 1.25, m | β | 17.09 | 1.18, m | ||
| 12 | 28.64 | 1.36, m | C=O | 172.20 | |||
| 13 | 31.23 | 1.23, m | Aib12 | NH | 8.04, s | ||
| 14 | 13.91 | 0.85, m | α | 56.06 | |||
| L-Pro1 | α | 60.13 | 4.26, dd (5.8, 7.8) | β-1 | 23.38 | 1.27, m a | |
| β | 28.45 | a: 2.16, m; b: 1.93, m | β-2 | 25.75 | 1.37, m a | ||
| γ | 24.57 | a: 2.02, m; b: 1.92, m | C=O | 174.09 | |||
| δ | 47.57 | 3.64, t (6.6) | β-Ala13 | NH | 7.50, t (5.6) | ||
| C=O | 172.43 | α | 35.83 | a: 3.30, m; b: 3.21, m | |||
| Aib2 | NH | 8.55, s | β | 35.06 | 2.31, m | ||
| α | 55.96 | C=O | 171.54 | ||||
| β1 | 23.90 | 1.34, m a | L-Ala14 | NH | 8.19, d (4.7) | ||
| β2 | 25.50 | 1.32, m a | α | 49.94 | 4.03, m d | ||
| C=O | 175.38 | β | 16.63 | 1.24, m | |||
| Aib3 | NH | 7.95, s | C=O | 174.01 | |||
| α | 55.84 | Aib15 | NH | 8.40, s | |||
| β-1 | 24.58 | 1.39, m a | α | 55.99 | |||
| β-2 | 25.74 | 1.36, m a | β-1 | 24.10 | 1.37, m a | ||
| C=O | 175.19 | β-2 | 24.96 | 1.36, m a | |||
| Aib4 | NH | 7.70, s b | C=O | 175.34 | |||
| α | 55.88 | Aib16 | NH | 7.80, s | |||
| β-1 | 24.92 | 1.34, m a | α | 55.69 | |||
| β-2 | 26.46 | 1.30, m a | β-1 | 22.93 | 1.29, m a | ||
| C=O | 175.14 | β-2 | 25.80 | 1.32, m a | |||
| L-Ala5 | NH | 7.71, d b | C=O | 175.26 | |||
| α | 50.02 | 3.93, m c | Aib17 | NH | 7.67, s | ||
| β | 16.47 | 1.28, m | α | 55.95 | |||
| C=O | 172.00 | β-1 | 21.99 | 1.33, m a | |||
| Aib6 | NH | 7.34, s | β-2 | 26.64 | 1.35, m a | ||
| α | 56.01 | C=O | 173.37 | ||||
| β-1 | 24.67 | 1.36, m a | L-Ala18 | NH | 7.56, d (7.8) | ||
| β-2 | 24.70 | 1.36, m a | α | 48.96 | 4.04, m d | ||
| C=O | 174.02 | β | 17.11 | 1.31, m | |||
| β-Ala7 | NH | 7.13, t (5.4) | C=O | 172.05 | |||
| α | 35.60 | a: 3.28, m; b: 3.18, m | Put | NH | 7.39, t (5.6) | ||
| β | 35.20 | 2.35, m | α | 37.90 | a: 3.10, m; b: 3.02, m | ||
| C=O | 171.04 | β | 25.88 | 1.50, m e | |||
| L-Val8 | NH | 8.00, d (7.0) | γ | 24.26 | 1.53, m e | ||
| α | 58.93 | 3.92, m c | δ | 38.53 | 2.78, m | ||
| β | 29.58 | 1.93, m | NH2 | 7.69, m b | |||
| γ-1 | 19.08 | 0.86, m | |||||
| γ-2 | 18.68 | 0.87, m | |||||
| C=O | 170.78 |
a–f Signals are overlapped. MOTDA - 2-methyl-3-oxo-tetradecanoyl.
Figure 22D NMR correlations used for structural characterization of compound 1.
1H- and 13C-NMR data for compound 2 in DMSO-d6 (500 and 125 MHz for 1H- and 13C-, respectively).
| Residue | Position | δC | δH, mult (J in Hz) | Residue | Position | δC | δH, mult (J in Hz) |
|---|---|---|---|---|---|---|---|
| MOTDA | 1 | 169.40 | Aib9 | NH | 8.02, s | ||
| 2 | 50.83 | 3.80, q (6.9) | α | 55.85 | |||
| 2’ | 12.45 | 1.15, d (6.9) | β-1 | 23.13 | 1.39, m a | ||
| 3 | 206.39 | β-2 | 24.30 | 1.33, m a | |||
| 4 | 40.42 | 2.47, m | C=O | 174.08 | |||
| 5 | 22.84 | 1.40, m a | β-Ala10 | NH | 7.44, m d | ||
| 6 | 22.04 | 1.24, m f | α | 35.81 | a: 3.32, m; b: 3.14, m | ||
| 7 | 28.69 | 1.16, m f | β | 35.09 | 2.29, m | ||
| 8 | 28.89 | 1.20, m f | C=O | 171.18 | |||
| 9 | 28.95 | 1.21, m f | L-Ala11 | NH | 8.10, d (4.8) | ||
| 10 | 28.82 | 1.24, m f | α | 49.19 | 4.10, q (6.6) | ||
| 11 | 28.99 | 1.25, m f | β | 17.15 | 1.18, m | ||
| 12 | 28.64 | 1.36, m a | C=O | 172.20 | |||
| 13 | 31.23 | 1.23, m f | Aib12 | NH | 8.04, s | ||
| 14 | 13.91 | 0.85, m | α | 56.06 | |||
| L-Pro1 | α | 60.13 | 4.26, dd (5.8, 7.8) | β-1 | 23.38 | 1.27, m a | |
| β | 28.45 | a: 2.16, m; b: 1.93, m | β-2 | 25.75 | 1.37, m a | ||
| γ | 24.57 | a: 2.02, m; b: 1.92, m | C=O | 174.03 | |||
| δ | 47.57 | 3.64, t (6.4) m | β-Ala13 | NH | 7.50, m e | ||
| C=O | 172.43 | α | 35.83 | a: 3.30, m; b: 3.21, m | |||
| Aib2 | NH | 8.55, s | β | 35.06 | 2.31, m | ||
| α | 55.96 | C=O | 171.54 | ||||
| β1 | 23.90 | 1.34, m a | L-Ala14 | NH | 8.14, d (4.7) | ||
| β2 | 25.50 | 1.32, m a | α | 49.70 | 4.03, m g | ||
| C=O | 175.38 | β | 16.74 | 1.24, m | |||
| Aib3 | NH | 7.95, s | C=O | 173.97 | |||
| α | 55.84 | Aib15 | NH | 8.41, s | |||
| β-1 | 24.58 | 1.39, m a | α | 55.99 | |||
| β-2 | 25.74 | 1.36, m a | β-1 | 23.90 | 1.37, m a | ||
| C=O | 175.19 | β-2 | 25.27 | 1.36, m a | |||
| Aib4 | NH | 7.70, s b | C=O | 175.00 | |||
| α | 55.88 | Aib16 | NH | 7.71, s | |||
| β-1 | 24.92 | 1.34, m a | α | 55.86 | |||
| β-2 | 26.46 | 1.30, m a | β-1 | 21.99 | 1.33, m a | ||
| C=O | 175.14 | β-2 | 26.47 | 1.35, m a | |||
| L-Ala5 | NH | 7.71, db | C=O | 173.49 | |||
| α | 50.02 | 3.93, m c | L-Ala17 | NH | 7.49, m e | ||
| β | 16.47 | 1.28, m | α | 48.96 | 4.04, m g | ||
| C=O | 172.00 | β | 17.27 | 1.31, m | |||
| Aib6 | NH | 7.34, s | C=O | 172.05 | |||
| α | 56.01 | Put | NH | 7.45, m d | |||
| β-1 | 24.67 | 1.36, m a | α | 37.9 | a: 3.10, m; b: 3.02, m | ||
| β-2 | 24.70 | 1.36, m a | β | 25.88 | 1.50, m h | ||
| C=O | 174.02 | γ | 24.26 | 1.53, m h | |||
| β-Ala7 | NH | 7.13, t (5.4) | δ | 38.49 | 2.78, m | ||
| α | 35.60 | a: 3.28, m; b: 3.18, m | NH2 | 7.69, m b | |||
| β | 35.20 | 2.35, m | |||||
| C=O | 171.04 | ||||||
| L-Val8 | NH | 8.00, d (7.0) | |||||
| α | 58.93 | 3.92, m c | |||||
| β | 29.58 | 1.93, m | |||||
| γ-1 | 19.08 | 0.86, m | |||||
| γ-2 | 18.68 | 0.87, m | |||||
| C=O | 170.78 |
a–e Signals are overlapped. MOTDA - 2-methyl-3-oxo-tetradecanoyl.
Figure 3HRMS for sphaerostilbellin A (1).
Figure 4HRMS for sphaerostilbellin B (2).
Figure 52D NMR correlations used for structural characterization of compound 2.
Minimum inhibitory concentration (MIC) values of peptaibiotics 1 and 2 against selected pathogens and murine macrophage cell line J774A.1.
| Pathogen or Cell Line | Compound (μM) | |
|---|---|---|
| Sphaerostilbellin A (1) | Sphaerostilbellin B (2) | |
| 2 | 2 | |
| 2 | 2 | |
| 4 | 2 | |
| 1 | 1 | |
| 8 | 32 | |
| Murine macrophage J774A.1 | >32 | 32 |