| Literature DB >> 35982225 |
Milad Noori1, Ali Davoodi2, Aida Iraji3,4, Navid Dastyafteh1, Minoo Khalili1, Mehdi Asadi2, Maryam Mohammadi Khanaposhtani5, Somayeh Mojtabavi6, Mehdi Dianatpour3, Mohammad Ali Faramarzi6, Bagher Larijani1, Massoud Amanlou7, Mohammad Mahdavi8.
Abstract
In this study, 18 novel quinoline-based-benzo[d]imidazole derivatives were synthesized and screened for their α-glucosidase inhibitory potential. All compounds in the series except 9q showed a significant α-glucosidase inhibition with IC50 values in the range of 3.2 ± 0.3-185.0 ± 0.3 µM, as compared to the standard drug acarbose (IC50 = 750.0 ± 5.0 µM). A kinetic study indicated that compound 9d as the most potent derivative against α-glucosidase was a competitive type inhibitor. Furthermore, the molecular docking study revealed the effective binding interactions of 9d with the active site of the α-glucosidase enzyme. The results indicate that the designed compounds have the potential to be further studied as new anti-diabetic agents.Entities:
Mesh:
Substances:
Year: 2022 PMID: 35982225 PMCID: PMC9386204 DOI: 10.1038/s41598-022-18455-7
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.996
Figure 1Schematic illustration of previously reported α-glucosidase inhibitors and newly designed compound.
Figure 2Synthesis of compounds 9a–r.
α-Glucosidase inhibitory activity of compounds 9a–r.
|
| |||
|---|---|---|---|
| Compound | R | IC50 (μM)a | Concentrations of precipitation (µM) |
| Phenyl | 30.2 ± 0.4 | ≥ 200 | |
| 2-Fluorophenyl | 61.3 ± 0.4 | ≥ 200 | |
| 4-Fluorophenyl | 13.5 ± 0.6 | ≥ 200 | |
| 3-Chlorophenyl | 3.2 ± 0.3 | ≥ 200 | |
| 4-Chlorophenyl | 110.4 ± 0.2 | ≥ 200 | |
| 2-Bromophenyl | 23.4 ± 0.2 | ≥ 200 | |
| 4-Bromophenyl | 185.0 ± 0.3 | ≥ 200 | |
| 2,6-Dichlorophenyl | 100.8 ± 0.1 | ≥ 200 | |
| 4-Nitrophenyl | 19.7 ± 0.2 | ≥ 200 | |
| 2-Methylphenyl | 16.5 ± 0.4 | ≥ 200 | |
| 4-Methylphenyl | 12.3 ± 0.2 | ≥ 200 | |
| 4-Methoxyphenyl | 5.7 ± 0.3 | ≥ 200 | |
| 4-Ethylphenyl | 55.6 ± 0.2 | ≥ 200 | |
| 2,3-Dimethylphenyl | 9.8 ± 0.5 | ≥ 200 | |
| 2,6-Dimethylphenyl | 147.0 ± 0.2 | ≥ 200 | |
| Naphthalene | 17.7 ± 0.8 | ≥ 200 | |
| Benzyl | 750 < | ≥ 200 | |
| 4-Fluorobenzyl | 33.0 ± 0.1 | ≥ 200 | |
| – | 750.0 ± 5.0 | – | |
aData represented in terms of mean ± SD.
Figure 3Summary of the SARs.
Figure 4Kinetics of α-glucosidase inhibition by 9d. (a) The Lineweaver–Burk plot in the absence and presence of different concentrations of 9d; (b) the secondary plot between Km and various concentrations of 9d.
Docking scores and interactions of compounds against the α-glucosidase (PDB ID: 5NN8).
| Compound | R | Glide score | Amino acid | Type of interaction |
|---|---|---|---|---|
| Phenyl | − 6.43 | Asp616 | H-bound | |
| Leu678 | H-bound | |||
| Phe649 | Pi–pi stacking | |||
| 2-Fluorophenyl | − 5.81 | Asp616 | H-bound | |
| Asp282 | H-bound | |||
| 4-Fluorophenyl | − 6.59 | Trp376 | Pi–pi stacking | |
| Trp481 | Pi–pi stacking | |||
| Leu677 | H-bound | |||
| Asp616 | H-bound | |||
| Arg600 | Pi–cation | |||
| Asp518 | Salt bridge | |||
| 3-Chlorophenyl | − 6.92 | Arg600 | Pi–cation | |
| Trp481 | H-bound | |||
| Asp616 | H-bound | |||
| Asp616 | H-bound | |||
| Leu677 | Halogen bound | |||
| 4-Chlorophenyl | − 5.39 | Arg600 | Pi–cation | |
| Asp282 | H-bound | |||
| Trp481 | H-bound | |||
| 2-Bromophenyl | − 6.14 | Arg600 | Pi–cation | |
| Asp282 | H-bound | |||
| Trp481 | H-bound | |||
| 4-Bromophenyl | − 4.65 | Asp282 | H-bound | |
| Trp481 | Pi–pi stacking | |||
| Phe649 | Pi–pi stacking | |||
| 2,6-Dichlorophenyl | − 4.99 | Trp481 | Pi–pi stacking | |
| Trp481 | Pi–pi stacking | |||
| Trp481 | Pi–pi stacking | |||
| Phe649 | Pi–pi stacking | |||
| Phe649 | Pi–pi stacking | |||
| 4-Nitrophenyl | − 6.31 | Asp616 | H-bound | |
| Asp282 | H-bound | |||
| Arg281 | Pi–cation | |||
| 2-Methylphenyl | − 6.13 | Asp616 | H-bound | |
| Asp282 | H-bound | |||
| Phe525 | Pi–pi stacking | |||
| 4-Methylphenyl | − 6.72 | Phe649 | Pi–pi stacking | |
| Phe649 | Pi–pi stacking | |||
| Asp616 | H-bound | |||
| Ser676 | H-bound | |||
| 4-Methoxyphenyl | − 6.33 | Leu677 | H-bound | |
| Asp616 | H-bound | |||
| Phe649 | Pi–pi stacking | |||
| Trp481 | Pi–pi stacking | |||
| 4-Ethylphenyl | − 6.54 | Asp282 | H-bound | |
| Asp282 | H-bound | |||
| Trp481 | H-bound | |||
| 2,3-Dimethylphenyl | − 6.900 | Asp616 | H-bound | |
| Trp481 | H-bound | |||
| Phe649 | Pi–pi stacking | |||
| 2,6-Dimethylphenyl | − 5.53 | Asp616 | H-bound | |
| Asp282 | H-bound | |||
| Naphthalene | − 6.25 | Asp616 | H-bound | |
| Asp616 | H-bound | |||
| Trp481 | H-bound | |||
| Phe525 | Pi–pi stacking | |||
| Trp376 | Pi–pi stacking | |||
| Benzyl | − 4.30 | Trp376 | Pi–pi stacking | |
| Phe525 | Pi–pi stacking | |||
| 4-Fluorobenzyl | − 5.90 | Asp282 | H-bound | |
| Asp282 | H-bound | |||
| Trp376 | Pi–pi stacking | |||
| Trp481 | Pi–pi stacking | |||
| Trp481 | Pi–pi stacking | |||
| Trp481 | Pi–pi stacking | |||
| – | − 6.14 | Asp616 | H-bound | |
| Asp616 | Salt bridge | |||
| Asp518 | H-bound | |||
| Phe525 | H-bound |
Figure 53D and 2D proposed binding modes of compounds 9d (blue color) with α-glucosidase.