| Literature DB >> 33842429 |
Muhammad Khattab1, Ahmed A Al-Karmalawy2.
Abstract
Although potential anticancer activities of benzimidazole-based anthelmintic drugs have been approved by preclinical and clinical studies, modes of binding interactions have not been reported so far. Therefore, in this study, we aimed to propose binding interactions of some benzimidazole-based anthelmintics with one of the most important cancer targets (Tubulin protein). Studied drugs were selected based on their structural similarity with the cocrystallized ligand (Nocodazole) with tubulin protein. Quantum mechanics calculations were also employed for characterization of electronic configuration of studied drugs at the atomic and molecular level. Order of binding affinities of tested benzimidazole drugs toward colchicine binding site on tubulin protein is as follows: Flubendazole > Oxfendazole > Nocodazole > Mebendazole > Albendazole > Oxibendazole > Fenbendazole > Ciclobendazole > Thiabendazole > Bendazole. By analyzing binding mode and hydrogen bond length between the nine studied benzimidazole drugs and colchicine binding site, Flubendazole was found to bind more efficiently with tubulin protein than other benzimidazole derivatives. The quantum mechanics studies showed that the electron density of HOMO of Flubendazole and Mebendazole together with their MEP map are quite similar to that of Nocodazole which is also consistent with the calculated binding affinities. Our study has ramifications for considering the repurposing of Flubendazole as a promising anticancer candidate.Entities:
Keywords: DFT calcualtions; anthelminthic; anticancer; drug repurposing; molecular docking; tubulin inhibitors
Year: 2021 PMID: 33842429 PMCID: PMC8024586 DOI: 10.3389/fchem.2021.628398
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
FIGURE 1Diagram illustrating structural similarity between benzimidazole anthelmintic drugs and NZO (reference drug).
The 3D view of binding interactions between tested benzimidazole drugs and NZO-binding pocket within Tubulin subunit B and D (PDB: 5CA1) beside the solved NZO complex (Native) and the docked complex (Docked). Red dashed lines refer to hydrogen bonds, while the black ones denote hydrophobic interactions.
| Drug | Protein (5CA1) subunit B | Protein (5CA1) subunit D |
|---|---|---|
| NZO (native) |
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| NZO (docked) |
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| Mebendazole |
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| Albendazole |
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| Ciclobendazole |
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| Fenbendazole |
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| Flubendazole |
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| Oxibendazole |
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| Oxfendazole |
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| Thiabendazole |
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| Bendazole |
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Calculated parameters obtained from docking of different benzimidazole drugs and NZO in the binding pockets within subunit B and D of Tubulin protein.
| Phys. Prop. | S (subunit B) | S (subunit D) | rmsd_refine | E_conf | E_refine |
|---|---|---|---|---|---|
| NZO (docked) | −7.34 | — | 0.95 | 0.64 | −26.68 |
| — | −7.04 | 2.07 | −7.66 | −27.13 | |
| Mebendazole | −7.36 | — | 1.54 | −21.83 | −37.08 |
| — | −7.28 | 1.40 | −20.16 | −37.04 | |
| Albendazole | −7.23 | — | 0.97 | −53.87 | −36.45 |
| — | −6.86 | 1.06 | −40.74 | −30.12 | |
| Ciclobendazole | −6.94 | — | 0.90 | 62.46 | −35.58 |
| — | −6.78 | 1.40 | 63.16 | −32.88 | |
| Fenbendazole | −7.09 | — | 1.71 | −47.42 | −37.47 |
| — | −7.39 | 1.22 | −46.84 | −37.31 | |
| Flubendazole | −7.36 | — | 1.19 | −18.75 | −36.26 |
| — | −7.25 | 1.38 | −3.47 | −34.07 | |
| Oxibendazole | −7.36 | — | 1.12 | −52.05 | −38.65 |
| — | −6.86 | 1.82 | −40.80 | −29.96 | |
| Oxfendazole | −7.31 | — | 2.47 | −28.07 | −38.11 |
| — | −7.55 | 2.03 | −27.11 | −38.19 | |
| Thiabendazole | −4.59 | — | 1.81 | 43.97 | −8.75 |
| — | −4.68 | 0.23 | 39.50 | −11.37 | |
| Bendazole | −5.44 | — | 1.12 | 39.08 | −12.60 |
| — | −5.03 | 1.60 | 43.80 | −6.76 |
S, the score of placement of a compound into the binding pocket of protein; rmsd_refine, the root-mean-squared-deviation (RMSD) between the heavy atoms of the predicted pose (after refinement) and those of the crystal structure (before refinement); E_conf, conformer energy in kcal/mol; E_refine, the score of refinement step of ligand conformer.
Calculated hydrogen bond length (in Å) between different benzimidazole drugs and NZO and the crucial amino acids at binding sites in subunits B and D of Tubulin protein.
| Phys. Prop. | Subunit | O-carbamate | NH-carbamate | N (1)H-benzimidazole | Cys239 |
|---|---|---|---|---|---|
| (Direct, indirect) | |||||
| NZO (native) | B | 3.19 | 2.70 | 2.94 | — |
| D | — | 2.72 | 2.92 | 3.23, 2.70 | |
| NZO (docked) | B | 3.03 | 2.95 | 2.87 | — |
| D | 2.93 | 2.76 | 2.80 | — | |
| Mebendazole | B | — | 2.89 | 2.91 | — |
| D | 2.99 | 3.03 | 2.83 | — | |
| Albendazole | B | — | 2.85 | 2.78 | — |
| D | — | 2.71 | 2.81 | 3.40, — | |
| Ciclobendazole | B | — | 2.99 | 2.97 | — |
| D | — | 2.92 | 2.81 | 3.23, 3.20 | |
| Fenbendazole | B | — | 2.96 | 2.86 | — |
| D | 2.95 | 3.03 | 2.81 | — | |
| Flubendazole | B | 3.03 | 2.93 | 2.92 | — |
| D | — | 2.79 | 2.84 | —, 3.14 | |
| Oxibendazole | B | — | 2.89 | 2.82 | — |
| D | 2.87 | 3.53 | 3.00 | — | |
| Oxfendazole | B | — | 2.97 | 2.87 | — |
| D | 2.95 | 3.04 | 2.81 | 3.30, 3.38 | |
| Thiabendazole | B | — | — | 2.74 | — |
| D | — | — | 2.66 | — | |
| Bendazole | B | — | — | 2.72 | — |
| D | — | — | 2.78 | — |
The 3D positioning of different forms tested benzimidazole drugs inside the deep binding pocket of NZO within Tubulin subunit B and D (PDB: 5CA1) alongside with the solved NZO complex (Native) and the docked complex (Docked).
| Drug | Protein (5CA1) subunit B | Protein (5CA1) subunit D |
|---|---|---|
| NZO (native) |
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| NZO (docked) |
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| Mebendazole |
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| Albendazole |
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| Ciclobendazole |
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| Fenbendazole |
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| Flubendazole |
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| Oxibendazole |
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| Oxfendazole |
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| Thiabendazole |
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| Bendazole |
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The charge density of the highest occupied molecular orbital (HOMO), the lowest unoccupied molecular orbital (LUMO), and the molecular electrostatic potential (MEP) map of studied compounds. Red and blue color codes represent the most electronegative and electropositive density, respectively. B3LYP/6-311+G* level of theory was employed to compute molecular orbital energies.
| HOMO | LUMO | MEP | |
|---|---|---|---|
| NZO (docked) |
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| Mebendazole |
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| Albendazole |
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| Ciclobendazole |
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| Fenbendazole |
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| Flubendazole |
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| Oxibendazole |
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| Oxfendazole |
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| Thiabendazole |
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| Bendazole |
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