| Literature DB >> 28936880 |
Carlotta Granchi1, Isabella Caligiuri2, Eleonora Bertelli1, Giulio Poli1, Flavio Rizzolio3, Marco Macchia1, Adriano Martinelli1, Filippo Minutolo1, Tiziano Tuccinardi1,4.
Abstract
Monoacylglycerol lipase is aEntities:
Keywords: Monoacylglycerol lipase inhibitors; docking; endocannabinoids; molecular dynamic simulations
Mesh:
Substances:
Year: 2017 PMID: 28936880 PMCID: PMC6009861 DOI: 10.1080/14756366.2017.1375484
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.Structures of some of the most relevant MAGL inhibitors.
Figure 2.Structural evolution of methyleneoxazol-5(4H)-one scaffold: previously developed biphenyl 2-methyloxazol-5(4H)-one compounds (A) and newly synthesised terphenyl-2-methyloxazol-5(4H)-one derivatives (B).
Scheme 3.Reagents and conditions: (a) phenylboronic acid, Pd2(dba)3, Cs2CO3, Cy3P 20% toluene, dioxane, 100 °C; b) N-acetylglycine, Ac2O, CH3COONa, reflux.
Scheme 1.Reagents and conditions: (a) for compound 4: phenylboronic acid, Pd(OAc)2, K3PO4, TBAB, H2O, 125 °C; for compound 6: phenylboronic acid, Pd(OAc)2, PPh3, aq. 2 M Na2CO3, toluene, EtOH, 100 °C; for compound 8: phenylboronic acid, Pd(OAc)2, PPh3, aq. 2 M Na2CO3, toluene, EtOH, 100 °C, then phenylboronic acid, Pd2(dba)3, Cs2CO3, Cy3P 20% toluene, dioxane, 100 °C; (b) N-acetylglycine, Ac2O, CH3COONa, reflux.
Scheme 2.Reagents and conditions: (a) phenylboronic acid, Pd(OAc)2, PPh3, aq. 2 M Na2CO3, toluene, EtOH, 100 °C; (b) N-acetylglycine, Ac2O, CH3COONa, reflux.
Scheme 4.Reagents and conditions: (a) variously substituted phenylboronic acid, Pd(OAc)2, PPh3, aq. 2 M Na2CO3, toluene, EtOH, 100 °C; (b) N-acetylglycine, Ac2O, CH3COONa, reflux.
Experimental inhibition activity (IC50) on human MAGL and FAAH of the analyzed compounds.
| # | Ar1 | Ar2 | Ar3 | Ar4 | MAGL IC50 (nM) | FAAH IC50 (nM) | MAGL/FAAH selectivity |
|---|---|---|---|---|---|---|---|
| H | Ph | Ph | H | 837 ± 18 | 2321 ± 51 | 3 | |
| Ph | H | Ph | H | 546 ± 20 | 18161 ± 904 | 33 | |
| Ph | Ph | H | H | 2558 ± 172 | 20055 ± 1438 | 8 | |
| H | Ph | H | Ph | 457 ± 10 | 14763 ± 1176 | 32 | |
| Ph | H | H | Ph | 320 ± 10 | 10860 ± 161 | 34 | |
| R1 | R2 | MAGL IC50 (nM) | FAAH IC50 (nM) | MAGL/FAAH selectivity | |||
| F | H | 683 ± 50 | 27989 ± 1306 | 41 | |||
| OCH3 | H | 348 ± 38 | 36118 ± 1123 | 104 | |||
| OCF3 | H | 4194 ± 299 | 17728 ± 1198 | 4 | |||
| CF3 | H | 6763 ± 1125 | 28992 ± 1157 | 4 | |||
| H | F | 628 ± 32 | 11713 ± 895 | 19 | |||
| –OCH2O– | 673 ± 23 | 23712 ± 1348 | 35 | ||||
| OCH3 | F | 335 ± 2 | 22311 ± 1239 | 67 | |||
| Cl | H | 476 ± 39 | 11487 ± 998 | 24 | |||
| 144 ± 4 | 14.7 ± 0.2 | 0.1 | |||||
| 49.8 ± 4.2 | 3301 ± 205 | 66 | |||||
Figure 3.Compound 20b-MAGL inhibition analysis. (A) IC50 (µM) values of 20b at different preincubation times with hMAGL (0, 30 and 60 min). (B) Dilution assay: the first two columns indicate the inhibition percentage of compound 20b at a concentration of 10 and 0.25 µM. The third column indicates the inhibition percentage of compound 20b after dilution (final concentration = 0.25 µM).
Figure 4.Minimised average structure of compound 20b docked into MAGL receptor (A) and analysis of 20b-MAGL H-bond interactions (B). The plot shows the distance analysis for the two H-bonds (i.e. HB1 and HB2).
Figure 5.Minimised average structure of compound 20b docked into FAAH receptor.
MM-PBSA results for compound 20b docked into MAGL and FAAH.
| Protein | Ele | VdW | PBsur | PB | ΔPBSA |
|---|---|---|---|---|---|
| MAGL | −12.5 | −52.2 | 43.4 | −5.2 | −26.5 |
| FAAH | −3.2 | −50.1 | 40.2 | −5.3 | −18.5 |
ΔPBSA is the sum of the electrostatic (Ele), van derWaals (VdW), polar (PB) and non-polar (PBSur) solvation free energy. Data are expressed as kcal•mol−1.