| Literature DB >> 34834038 |
Mei Huang1,2, Wen-Gui Duan1, Gui-Shan Lin1, Bao-Yu Li1.
Abstract
A series of novel menthol derivatives containing 1,2,4-triazole-thioether moiety were designed, synthesized, characterized structurally, and evaluated biologically to explore more potent natural product-based antifungal agents. The bioassay results revealed that at 50 μg/mL, some of the target compounds exhibited good inhibitory activity against the tested fungi, especially against Physalospora piricola. Compounds 5b (R = o-CH3 Ph), 5i (R = o-Cl Ph), 5v (R = m,p-OCH3 Ph) and 5x (R = α-furyl) had inhibition rates of 93.3%, 79.4%, and 79.4%, respectively, against P. piricola, much better than that of the positive control chlorothalonil. Compounds 5v (R = m,p-OCH3 Ph) and 5g (R = o-Cl Ph) held inhibition rates of 82.4% and 86.5% against Cercospora arachidicola and Gibberella zeae, respectively, much better than that of the commercial fungicide chlorothalonil. Compound 5b (R = o-CH3 Ph) displayed antifungal activity of 90.5% and 83.8%, respectively, against Colleterichum orbicalare and Fusarium oxysporum f. sp. cucumerinum. Compounds 5m (R = o-I Ph) had inhibition rates of 88.6%, 80.0%, and 88.0%, respectively, against F. oxysporum f. sp. cucumerinu, Bipolaris maydis and C. orbiculare. Furthermore, compound 5b (R = o-CH3 Ph) showed the best and broad-spectrum antifungal activity against all the tested fungi. To design more effective antifungal compounds against P. piricola, 3D-QSAR analysis was performed using the CoMFA method, and a reasonable 3D-QSAR model (r2 = 0.991, q2 = 0.514) was established. The simulative binding pattern of the target compounds with cytochrome P450 14α-sterol demethylase (CYP51) was investigated by molecular docking.Entities:
Keywords: 1,2,4-triazole-thioether; 3D-QSAR; antifungal activity; menthol; molecular docking
Mesh:
Substances:
Year: 2021 PMID: 34834038 PMCID: PMC8618492 DOI: 10.3390/molecules26226948
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of menthol-derived 1,2,4-triazole-thioether compounds 5a–5z. Reagents and conditions: (a) Chloroacetyl chloride, TEA, DMAP, 0 °C; (b) Methyl isothiocyanate, EtOH, 80 °C, 3h; NaOH 10%, 100 °C, 4 h; (c) Sodium acetate trihydrate, H2O, EtOH, 80 °C, 6 h.
Antifungal activity of the target compounds 5a–5z at 50 µg/mL.
| Compounds | Relative Inhibition Rate (%) against the Fungi | |||||||
|---|---|---|---|---|---|---|---|---|
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| 22.5 | 48.9 | 45.7 | 45.0 | 22.2 | 22.3 | 32.7 | 30.8 | |
| 83.8 | 68.6 | 93.3 | 72.5 | 49.2 | 41.7 | 77.5 | 90.5 | |
| 24.3 | 47.9 | 54.4 | 35.0 | 29.6 | 14.9 | 27.5 | 24.6 | |
| 74.3 | 54.8 | 62.8 | 56.9 | 49.2 | 46.6 | 77.5 | 56.3 | |
| 26.7 | 65.2 | 60.0 | 60.0 | 49.2 | 14.9 | 32.5 | 27.1 | |
| 79.0 | 72.1 | 73.9 | 72.5 | 47.3 | 52.7 | 72.5 | 66.1 | |
| 24.3 | 51.4 | 46.1 | 53.8 | 86.5 | 14.9 | 30.0 | 17.3 | |
| 22.5 | 21.1 | 17.1 | 30.0 | 23.9 | 16.2 | 32.7 | 35.0 | |
| 76.7 | 79.0 | 79.4 | 69.4 | 62.9 | 41.7 | 70.0 | 73.4 | |
| 45.7 | 58.3 | 62.8 | 50.6 | 49.2 | 13.7 | 55.0 | 39.3 | |
| 14.2 | 21.1 | 17.1 | 45.0 | 23.9 | 16.2 | 14.5 | 26.7 | |
| 24.3 | 51.4 | 35.0 | 41.3 | 29.6 | 13.7 | 37.5 | 22.2 | |
| 88.6 | 68.6 | 73.9 | 63.1 | 59.0 | 38.0 | 80.0 | 88.0 | |
| 24.3 | 54.8 | 65.6 | 50.6 | 35.5 | 14.9 | 32.5 | 22.2 | |
| 64.8 | 79.0 | 65.6 | 66.3 | 59.0 | 39.3 | 67.5 | 66.1 | |
| 38.6 | 51.4 | 57.2 | 47.5 | 45.3 | 19.8 | 42.5 | 34.4 | |
| 31.4 | 54.8 | 65.6 | 56.9 | 59.0 | 23.4 | 37.5 | 17.3 | |
| 18.3 | 32.2 | 24.3 | 40.0 | 32.2 | 55.7 | 28.2 | 22.5 | |
| 71.9 | 72.1 | 60.0 | 72.5 | 51.2 | 56.3 | 75.0 | 63.7 | |
| 76.7 | 68.6 | 62.8 | 56.9 | 53.1 | 55.1 | 55.0 | 56.3 | |
| 38.6 | 58.3 | 60.0 | 47.5 | 45.3 | 17.3 | 42.5 | 36.8 | |
| 76.7 | 82.4 | 79.4 | 56.9 | 43.3 | 34.4 | 55.0 | 46.6 | |
| 50.5 | 61.7 | 73.9 | 53.8 | 51.2 | 35.6 | 57.5 | 56.3 | |
| 26.7 | 37.6 | 79.4 | 38.1 | 23.7 | 14.9 | 35.0 | 22.2 | |
| 31.4 | 58.3 | 51.7 | 38.1 | 39.4 | 11.2 | 32.5 | 22.2 | |
| 26.7 | 65.2 | 62.8 | 44.4 | 19.8 | 17.3 | 30.0 | 22.2 | |
| Chlorothanil | 100 | 73.3 | 75.0 | 73.9 | 73.1 | 96.1 | 90.4 | 91.3 |
Summary of CoMFA analysis.
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| 0.514 |
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| 0.991 |
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| 0.050 |
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| 184.384 |
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| Steric | 75.2 |
| Electrostatic | 24.8 |
q2: cross-validated correlational coefficient; r2: non-validated correlational coefficient; S: standard error of estimate; F: the Fischer ratio.
Figure 1Predicted ED values of CoMFA model vs experimental ED value.
The ED values of experimental and predicted activities.
| Compound | R | WM | ED | ED” | Residue |
|---|---|---|---|---|---|
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| Ph | 387.20 | −2.66 | −2.61 | −0.05 |
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| 401.21 | −1.46 | −1.45 | −0.01 | |
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| 401.21 | −2.53 | −2.49 | −0.04 | |
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| 417.21 | −2.39 | −2.35 | −0.04 | |
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| 417.21 | −2.44 | −2.48 | 0.04 | |
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| 405.19 | −2.16 | −2.17 | 0.01 | |
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| 405.19 | −2.68 | −2.71 | 0.03 | |
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| 405.19 | −3.29 | −3.34 | 0.04 | |
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| 421.16 | −2.04 | −2.13 | 0.09 | |
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| 421.16 | −2.40 | −2.39 | −0.01 | |
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| 421.16 | −3.31 | −3.28 | −0.03 | |
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| 465.11 | −2.94 | −2.98 | 0.04 | |
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| 513.09 | −2.26 | −2.25 | −0.01 | |
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| 513.09 | −2.43 | −2.40 | −0.03 | |
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| 455.19 | −2.38 | −2.38 | 0.00 | |
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| 455.19 | −2.53 | −2.53 | 0.00 | |
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| 403.19 | −2.32 | −2.25 | −0.07 | |
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| 403.19 | −3.10 | −3.04 | −0.06 | |
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| 402.21 | −2.43 | −2.47 | 0.04 | |
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| 402.21 | −2.38 | −2.44 | 0.06 | |
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| 443.26 | −2.47 | −2.48 | 0.01 | |
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| 447.22 | −2.06 | −2.04 | −0.02 | |
| 447.22 | −2.20 | −2.22 | 0.02 |
ED: experimental value; ED”: predictive value; *: test-set compound.
Figure 2Contours of CoMFA analysis: (A) contours of steric contribution are represented in yellow and green; (B) contours of electrostatic contribution are represented in red and blue.
Figure 3The binding pocket (A) and modes of compound 5b (R = o-CH3 Ph) respectively presented in the 2D (B) and 3D pattern (C), along with the binding modes of imibenconazole presented in the 2D pattern (D).
Figure 4The asterisk skeleton of title compounds.
Figure 5Superposition modes of compounds.