| Literature DB >> 28243286 |
Bo Wei1, Zhong-Duo Yang2, Dan-Feng Shi3, Xiao-Jun Yao3, Ming-Gang Wang1.
Abstract
Seven stilbenes and one catechin were bioactivity-guidedly isolated from the rhizomes of Rheum palmatem. Their structures were identified as piceatannol (1), resveratrol (2), piceid (3), rhapontigenin (4), piceatannol-3´-O-β-D-glucopyranoside (5), rhaponticin (6), catechin (7) and desoxyrhapontigenin (8). Anti-monoamine oxidase (MAO) activities of compounds 1-8 were tested. Compounds 1 and 8 showed significant MAO inhibitory activities with IC50 values 16.4 ± 1.5 μM and 11.5 ± 1.1, respectively, when the IC50 value of iproniazid as a standard was 6.5 ± 0.5 μM. The selectivity of compounds 1-8 against MAO-A and MAO-B were also evaluated. The results showed that compounds 4˴6˴8 preferred to inhibit MAO-A rather than MAO-B with selectivity values ([IC50 of MAO-B]/ [IC50 of MAO-A]) of 4.74, 10.01 and 9.42, respectively. The preliminary structure-activity relationships (SARs) of these compounds were discussed and the molecular modeling was also performed to explore the binding mode of inhibitors at the active site of MAO-A and MAO-B.Entities:
Keywords: Molecular modeling; Monoamine oxidase inhibitors; Rheum palmatum; Stilbenes
Year: 2016 PMID: 28243286 PMCID: PMC5316268
Source DB: PubMed Journal: Iran J Pharm Res ISSN: 1726-6882 Impact factor: 1.696
Figure 1The structures of compound 1-8.
In-vitro quantitative inhibition of MAO by 1–8.
| sample | IC50 (Mixed type MAO, µM) | IC50 (MAO-A, µM) | IC50 (MAO-B, µM) | Selectivity Values |
|---|---|---|---|---|
| Piceatannol | 16.4±1.5 | 18.7±1.5 | 18.7±1.9 | 1 |
| Resveratrol | 88.2±3.2 | 194.3±4.8 | 150.2±5.7 | 0.77 |
| Piceid | 85.0±3.8 | 87.1±2.1 | 96.3±3.4 | 1.10 |
| Rhapontigenin | 38.1±2.1 | 27.0±1.6 | 128.1±4.8 | 4.74 |
| Piceatannol-3'-O-β-D- glucopyranoside | 47.3±3.2 | 34.0±2.8 | 43.2±2.4 | 1.27 |
| Rhapontigenin | 70.4±.3.8 | 26.0±1.2 | 260.3±5.6 | 10.01 |
| Catechin | 140.5±5.4 | 130.0±4.3 | 125.6±4.2 | 0.97 |
| Desoxyrhapontigenin | 11.5±.1.1 | 4.5±1.1 | 42.4±2.7 | 9.42 |
| (+)Iproniazid Phosphate | 7.0±0.6 | 6.1±0.3 | 9.0±0.5 | 1.47 |
Values are the mean ± SD of triplicate experiments.
Positive control.
Figure 2The predicted binding mode of compounds 2, 4, 8 to MAO-A and MAO-B. The MAO-A and MAO-B was shown as ribbon model. The side chains of the active site residues (green or blue sticks) and compounds 2, 4, 8 (magenta sticks) were represented as stick model
Figure 3The superimposition of the ligand in MAO-A (orange) and MAO-B (magentas).
The calculated binding free energy of 2, 4, 8with MAO.
| Compound | Compound | Compound | |
|---|---|---|---|
| MAO-A(Docking/(Kcal/mol) ) | -10.06 | -9.25 | -8.36 |
| MAO-A (test, IC50/µM)) | 4.5 | 27 | 194 |
| MAO-B(docking/(Kcal/mol) ) | -9.24 | -8.95 | -8.62 |
| MAO-B (test, IC50/µM)) | 42 | 128 | 150 |