| Literature DB >> 22778547 |
Sangeetha Srinivasan1, D V L Sarada.
Abstract
Antifungal activity of petroleum ether extract of Psoralea corylifolia L. seed, tested against Fusarium sp. namely, Fusarium oxysporum, Fusarium moniliforme, and Fusarium graminearum, was evaluated by agar well diffusion assay. The chromatographic fractionation of the extract yielded a new phenyl derivative of pyranocoumarin (PDP). The structure of the PDP was confirmed using spectroscopic characterization (GC-MS, IR, and NMR), and a molecular mass of m/z 414 [M-2H](+) with molecular formula C(27)H(28)O(4) was obtained. The PDP had a potent antifungal activity with a minimum inhibitory concentration of 1 mg/mL against Fusarium sp. Molecular docking using Grid-Based Ligand Docking with Energetics (GLIDE, Schrodinger) was carried out with the Tri101, trichothecene 3-O-acetyltransferase, as target protein to propose a mechanism for the antifungal activity. The ligand PDP showed bifurcated hydrogen bond interaction with active site residues at TYR 413 and a single hydrogen bond interaction at ARG 402 with a docking score -7.19 and glide energy of -45.78 kcal/mol. This indicated a strong binding of the ligand with the trichothecene 3-O-acetyltransferase, preventing as a result the acetylation of the trichothecene mycotoxin and destruction of the "self-defense mechanism" of the Fusarium sp.Entities:
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Year: 2012 PMID: 22778547 PMCID: PMC3388716 DOI: 10.1155/2012/310850
Source DB: PubMed Journal: J Biomed Biotechnol ISSN: 1110-7243
Antifungal activity of seed extracts of Psoralea corylifolia L. against plant pathogens.
| Extracts | Zone of inhibition (diameter in cm) | ||
|---|---|---|---|
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|
| |
| Petroleum ether extract (100 mg/mL) |
|
|
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| Chloroform extract (100 mg/mL) | 1.8 (±0.07) | 2.13 (±0.03) | 1.5 (±0.03) |
| Ethanol extract (100 mg/mL) | 1.6 (±0.09) | 2.03 (±0.03) | 1.30 (±0.06) |
| Ketoconazole (1 mg/mL) | 3.2 (±0.03) | 3.16 (±0.03) | 2.97 (±0.03) |
| Ethanol (100%) | 0.33 (±0.03) | 0.26 (±0.03) | 0.33 (±0.03) |
*Mean of three replications.
Antifungal activity of secondary fraction of petroleum ether extract against plant pathogens.
| Secondary fractions | Zone of inhibition (diameter in cm) | ||
|---|---|---|---|
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|
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| |
| SF1 (10 mg/mL) | 0.26 (±0.03) | 0.46 (±0.03) | — |
| SF2 (10 mg/mL) | — | 0.4 9 (±0.06) | — |
| SF3 (10 mg/mL) | 0.33 (±0.03) | 1.6 (±0.10) | — |
| SF4 (10 mg/mL) (PDP) |
|
|
|
| SF5 (10 mg/mL) | 1.3 (±0.06) | 1.43 (±0.03) | 1.13 (±0.09) |
| Ketoconazole (1 mg/mL) | 3.2 (±0.03) | 3.16 (±0.03) | 2.97 (±0.03) |
| Ethanol (100%) | 0.33 (±0.03) | 0.26 (±0.03) | 0.33 (±0.03) |
*Mean of three replications, (—): no zone.
Minimum inhibitory concentration of PDP against fungal plant pathogens.
| Compound | Fungal plant pathogens | ||
|---|---|---|---|
|
|
|
| |
| Phenyl derivative of pyranocoumarin | |||
| 10 mg/mL | − | − | − |
| 1 mg/mL | − | − | − |
| 0.1 mg/mL | + | + | + |
| 0.01 mg/mL | + | + | + |
| Ketoconazole | |||
| 10 mg/mL | − | − | − |
| 1 mg/mL | − | − | − |
| 0.1 mg/mL | + | + | + |
| 0.01 mg/mL | + | + | + |
| Solvent control | + | + | + |
| Cells | + | + | + |
“+” Growth, “–”: no growth.
Figure 1(a) Gas chromatogram of the PDP. (b) Mass fragmentation spectrum of PDP.
Figure 2Phenyl derivative of pyranocoumarin (PDP).
IFD results of ligand PDP and native ligand ZBA with the target protein trichothecene 3-O-acetyltransferase.
| Sl. no. | Ligand name | Docking score | Glide energy kcal/mol | Hydrogen bond D–H⋯A | Distance Å |
|---|---|---|---|---|---|
| (1) | Phenyl derivative of pyranocoumarin (PDP) | −7.19 | −45.78 | (TYR 413)O–H⋯O | 3.03 |
| (2) | Native ligand ZBA | −7.79 | −48.81 | O–H⋯N(HIS 156) | 2.67 |
Figure 3Ligplot image of interaction between ZBA (T2 mycotoxin) with trichothecene 3-O-acetyltransferase. Green dotted lines are hydrogen bond interactions and red semicircles are the hydrophobic interactions.
Figure 4Ligplot image of interaction between PDP with trichothecene 3-O-acetyltransferase. Green dotted lines are hydrogen bond interactions and red semicircles are the hydrophobic interactions.
Figure 5The docked complex of the ligand PDP in the active site residue cleft of the protein trichothecene 3-O-acetyltransferase.