| Literature DB >> 35330168 |
Winnie Rotich1, Eduard Mas-Claret2, Nicholas Sadgrove2, Anastasia Guantai3, Guillermo F Padilla-González2, Moses K Langat2.
Abstract
In our continued study on the anti-HIV activity of compounds present in CareVidTM, we report the HIV-1 integrase ((HIV-1 IN) inhibitory effects of pellitorine (1), oleuropein (2), magnoflorine (3), crotepoxide (4), ent-kaurane-16β,17-diol (5), crotocorylifuran (6), lupeol (7), betulin (8), and ellagic acid (9) in an in vitro enzyme assay, and in an in silico study. Ellagic acid, pellitorine, lupeol, and betulin showed an in vitro percentage inhibition against HIV-1 IN of 21.1%, 19.0%, 18.5%, and 16.8%, respectively, at a standard concentration of 25 μg/mL. However, from a pharmacokinetic perspective, ellagic acid has poor bioavailability, due to rapid elimination in metabolism in the gut microbiome. It was postulated that known gut catabolites of ellagic acid, urolithin A (10) and urolithin B (11) could be more promising candidates in exploring the anti-HIV activity of ellagic acid-rich medicinal species consumed orally. On the contrary, urolithin A and urolithin B demonstrated lower activity with comparison to ellagic acid. The binding affinity of compounds 1-9, urolithin A, and urolithin B against the catalytic domain of HIV-1 IN was also explored by in silico methods. Docking studies showed oleuropein as the best candidate, with a predicted energy of binding of ΔG -5.81 kcal/mol, while ellagic acid showed moderate predicted inhibition (ΔG -4.38 kcal/mol) caused by the interaction between the carbonyl and the key Mg2+ ion in the active site.Entities:
Keywords: CareVidTM; HIV-1 integrase; ellagic acid; molecular docking; pellitorine; urolithin A and urolithin B
Year: 2022 PMID: 35330168 PMCID: PMC8950597 DOI: 10.3390/life12030417
Source DB: PubMed Journal: Life (Basel) ISSN: 2075-1729
Figure 1Compounds present in CareVidTM tested for Anti-HIV 1 IN inhibition.
Figure 2Structure of ellagic acid (9) present in CareVidTM and its microbial catabolites, urolithin A and urolithin B [20].
% Activity relative to control (HIV-1 integrase) values obtained for the different compounds tested against HIV-1 Integrase. Compounds were assayed at a concentration of 25 μg/mL a.
| Treatment | % Activity rel. to Control | % Inhibition |
|---|---|---|
| HIV Integrase (no inhibition) | 100 | 0 |
| Pellitorine ( | 81.0 ± 9.1 * | 19.0 |
| Oleuropein ( | 95.3 ± 4.2 | 4.7 |
| Magnoflorine ( | 88.0 ± 7.5 | 12.0 |
| Crotepoxide ( | 91.0 ± 5.0 | 9.0 |
| 86.6 ± 2.1 | 13.4 | |
| Crotocorylifuran ( | 90.9 ± 5.0 | 9.1 |
| Lupeol ( | 81.5 ± 1.2 * | 18.5 |
| Betulin ( | 83.2 ± 13.6 | 16.8 |
| Ellagic acid ( | 78.9 ± 5.7 * | 21.1 |
| Urolithin a ( | 88.7 ± 5.4 | 11.3 |
| Urolithin b ( | 90.1 ± 3.8 | 9.9 |
a Results presented as mean ± standard deviation (n = 3). The data were analyzed with the one-way ANOVA, using Dunnett’s test with a significance level set at 0.05. * p < 0.05.
Calculated free energy of ligands docked with HIV-1 IN.
| Free Energy of Binding (ΔG) kcal/mol | ||
|---|---|---|
| Compound | Rigid Receptor | Induced Fit |
| 5CITEP | −4.42 | −4.18 |
| Pellitorine ( | −4.34 | −4.22 |
| Oleuropein ( | −5.67 | −5.94 |
| Magnoflorine ( | −4.24 | −4.25 |
| Crotepoxide ( | −4.75 | −4.96 |
| >0 | >0 | |
| Crotocorylifuran ( | −4.33 | −4.21 |
| Lupeol ( | >0 | >0 |
| Betulin ( | >0 | >0 |
| Ellagic acid ( | −4.16 | −4.60 |
| Urolithin A ( | −3.95 | −3.91 |
| Urolithin B ( | −3.80 | −3.81 |
Figure 3Inhibitor 5CITEP (purple) in complexation with the catalytic domain of HIV-1 IN (PDB ID: 1QS4).
Figure 4Highest scoring docked poses of top scoring ligand oleuropein 2 (orange) and ellagic acid 9 (yellow) in the catalytic domain of HIV-1 IN (PDB ID: 1QS4).
Figure 5Ligand interactions between top scoring ligands and the active site of HIV-1 IN (PDB ID: 1QS4).