| Literature DB >> 33840171 |
Surya Narayan Rath1,2, Lingaraja Jena3, Rajabrata Bhuyan4, Nimai Charan Mahanandia5, Manorama Patri2.
Abstract
Levodopa (L-DOPA) therapy is normally practised to treat motor pattern associated with Parkinson disease (PD). Additionally, several inhibitory drugs such as Entacapone and Opicapone are also cosupplemented to protect peripheral inactivation of exogenous L-DOPA (~80%) that occurs due to metabolic activity of the enzyme catechol-O-methyltransferase (COMT). Although, both Entacapone and Opicapone have U.S. Food and Drug Administration approval but regular use of these drugs is associated with high risk of side effects. Thus, authors have focused on in silico discovery of phytochemicals and evaluation of their effectiveness against human soluble COMT using virtual screening, molecular docking, drug-like property prediction, generation of pharmacophoric property, and molecular dynamics simulation. Overall, study proposed, nine phytochemicals (withaphysalin D, withaphysalin N, withaferin A, withacnistin, withaphysalin C, withaphysalin O, withanolide B, withasomnine, and withaphysalin F) of plant Withania somnifera have strong binding efficiency against human COMT in comparison to both of the drugs i.e., Opicapone and Entacapone, thus may be used as putative bioenhancer in L-DOPA therapy. The present study needs further experimental validation to be used as an adjuvant in PD treatment.Entities:
Keywords: L-DOPA; Parkinson disease; Withania somnifera; inhibitors; phytochemicals
Year: 2021 PMID: 33840171 PMCID: PMC8042297 DOI: 10.5808/gi.20061
Source DB: PubMed Journal: Genomics Inform ISSN: 1598-866X
Fig. 1.Crystal structure of human catechol-O-methyltransferase (COMT) (PDB ID: 3BWM, chain A) enzyme with substrate S-adenosyl methionine and 3,5-dinitrocatechol (DNC) (left). Amino acids found interacting with DNC and Mg2+ ion within the active pocket of COMT are deciphered in the right side.
Fig. 2.Molecular dynamics simulation (MD) plots of catechol-O-methyltransferase (COMT) enzyme attached with and without S-adenosylmethionine (SAM) and a substrate analog, 3,5-dinitrocatechol (DNC): root mean square deviation (RMSD) plot of backbone (A), root mean square fluctuation (RMSF) plot for residue wise fluctuation (B), and radius of gyration (RG) plot for overall compactness of the system (C). MD simulation plots of COMT enzyme in complex with 10 different phytochemicals of plant Withania somnifera: RMSD plot of backbone (D), RMSF plot for residue wise fluctuation (E), and RG plot for overall compactness of the system in presence of phytochemicals (F).
Binding energy scores of 15 drug-like phytochemicals of plant Withania somnifera resulted from virtual screening against human COMT enzyme
| No. | Ligand | Binding energy score | Drug likeness (Lipinski’s rule of five) | BBB permeant |
|---|---|---|---|---|
| 1 | Withaphysalin M | ‒10.3 | Suitable | No |
| 2 | Withaphysalin N | ‒10.3 | Suitable | No |
| 3 | Withaphysalin F | ‒9.9 | Suitable | No |
| 4 | Withaphysalin O | ‒9.5 | Suitable | No |
| 5 | Withaphysalin C | ‒5.8 | Suitable | No |
| 6 | Withaphysalin D | ‒5.3 | Suitable | Yes |
| 7 | Withanolide B | ‒6.0 | Suitable | Yes |
| 8 | Withaferin A | ‒6.1 | Suitable | No |
| 9 | Withacnistin | ‒5.9 | Suitable | No |
| 10 | Withasomnine | ‒5.3 | Suitable | Yes |
| 11 | Anaferine | ‒4.6 | Suitable | Yes |
| 12 | Calystegine B2 | ‒5.2 | Suitable | No |
| 13 | Cuscohygrine | ‒4.2 | Suitable | Yes |
| 14 | Pelletierine | ‒3.9 | Suitable | Yes |
| 15 | Tropine | ‒4.0 | Suitable | Yes |
COMT, catechol-O-methyltransferase; BBB, blood-brain barrier.
Comparative account of binding energy scores resulted from virtual screening and molecular docking between 15 phytochemicals of Withania somnifera plant and human COMT enzyme
| No. | Ligand | Binding energy score | |
|---|---|---|---|
| Active site based virtual screening (kcal/mol) | Molecular docking (kcal/mol) | ||
| 1 | Withaphysalin M | ‒10.3 | ‒7.42 |
| 2 | Withaphysalin N | ‒10.3 | ‒7.24 |
| 3 | Withaphysalin F | ‒9.9 | ‒6.48 |
| 4 | Withaphysalin O | ‒9.5 | ‒6.78 |
| 5 | Withaphysalin C | ‒5.8 | ‒6.85 |
| 6 | Withaphysalin D | ‒5.3 | ‒7.84 |
| 7 | Withanolide B | ‒6.0 | ‒7.63 |
| 8 | Withaferin A | ‒6.1 | ‒7.53 |
| 9 | Withacnistin | ‒5.9 | ‒7.13 |
| 10 | Withasomnine | ‒5.3 | ‒6.09 |
| 11 | Anaferine | ‒4.6 | ‒6.33 |
| 12 | Calystegine B2 | ‒5.2 | ‒4.98 |
| 13 | Cuscohygrine | ‒4.2 | ‒6.51 |
| 14 | Pelletierine | ‒3.9 | ‒6.31 |
| 15 | Tropine | ‒4.0 | ‒4.94 |
COMT, catechol-O-methyltransferase.
Docking scores of 15 phytochemicals and two synthetic inhibitors (opicapone and entacapone) against human COMT resulted from molecular docking
| No. | Ligand (phytochemical/drug) | Binding energy score (kcal/mol) | Inhibition constant (μM) |
|---|---|---|---|
| 1 | Withaphysalin D | -7.84 | 1.8 |
| 2 | Withanolide B | -7.63 | 2.54 |
| 3 | Withaferin A | -7.53 | 3.03 |
| 4 | Withaphysalin M | -7.42 | 3.67 |
| 5 | Withaphysalin N | -7.24 | 4.93 |
| 6 | Withacnistin | -7.13 | 5.92 |
| 7 | Withaphysalin C | -6.85 | 9.56 |
| 8 | Withaphysalin O | -6.78 | 10.76 |
| 9 | Opicapone | -6.74 | 11.41 |
| 10 | Cuscohygrine | -6.51 | 16.96 |
| 11 | Withaphysalin F | -6.48 | 17.83 |
| 12 | Entacapone | -6.34 | 22.55 |
| 13 | Anaferine | -6.33 | 23.06 |
| 14 | Pelletierine | -6.31 | 23.5 |
| 15 | Withasomnine | -6.09 | 34.35 |
| 16 | Calystegine B2 | -4.98 | 224.43 |
| 17 | Tropine | -4.94 | 240.97 |
COMT, catechol-O-methyltransferase.
Drug compounds.
Fig. 3.The 2D view of close amino acid residues participated in h-bond, Van der Waals interaction, and Pi-Alkyl interaction with phytochemicals within the active pocket of human catechol-O-methyltransferase (COMT) are represented: withaphysalin D (A), withaphysalin N (B), withaphysalin M (C), withaferinA (D), withacnistin (E), withaphysalin C (F), withaphysalin O (G), withaphysalin F (H), withasomnine (I), and withanolide B (J).
Strong atomic interaction predicted between 10 phytochemicals of Withania somnifera plant and human COMT enzyme (distance ≤3.5 Å)
| No. | Phytochemical | Predicted amino acid residues within active site of COMT (distance ≤3 Å) | Predicted h-bond residues | Bond | Distance between atoms (Å) |
|---|---|---|---|---|---|
| 1 | Withaphysalin D | Met 40, Asp 141,His 142, Trp 143, Lys144, Asp145, Arg 146, Tyr 147, Asn 170, Pro 174 | Asp145 | HN---O | 2.66 |
| Arg146 | HN---O | 3.33 | |||
| 2 | Withanolide B | His 142, Trp 143, Lys 144, Asp145, Arg 146, Tyr 147, Pro 174 | Asp145 | O---HO | 2.75 |
| Arg146 | HN---O | 3.00 | |||
| 3 | Withaphysalin N | Met 40, His 142, Trp 143, Lys 144, Asp145, Arg 146, Tyr 147, Asn170, Pro 174 | Lys144 | HN---O | 2.95 |
| HN---O | 2.87 | ||||
| 4 | Withaphysalin M | Met 40, Tyr 68, Asp 141, His 142, Trp 143, Lys144, Asp145, Tyr 147, Asn 170, Pro 174, Ala 176 | Tyr 68 | O---HO | 2.80 |
| Asp 141 | O---HO | 2.53 | |||
| Lys144 | N---O | 2.93 | |||
| 5 | Withaferin A | Met 40, Tyr 68, Asp 141, His 142, Trp 143, Tyr 147, Asp 169, Asn 170 | Tyr 68 | O---O | 2.75 |
| His 142 | O---HO | 2.94 | |||
| Tyr147 | O---HO | 2.95 | |||
| Asn 170 | N---OH | 3.38 | |||
| 6 | Withacnistin | Trp 38, Met 40, Tyr 68, His 142, Trp 143, Lys 144, Tyr 147, Asp 169, Asn 170, Pro 174, Leu 198, Glu 199, Arg 201, Asp 205 | Tyr68 | OH---O | 3.19 |
| Pro 174 | N---O | 3.30 | |||
| 7 | Withaphysalin C | Trp 38, Met 40, Tyr 68, His 142, Trp 143, Lys 144, Asp 145, Arg 146, Pro 174, Leu 198, Arg 201 | Lys 144 | HN---O | 2.16 |
| Asp145 | HN---O | 2.11 | |||
| 8 | Withaphysalin O | Trp 38, Met 40, His 142, Trp 143, Lys 144, Asp 145, Arg 146, Tyr 147, Asn 170, Leu 198, Arg 201 | Lys144 | NH---O | 1.81 |
| Asp145 | O---HO | 2.19 | |||
| 9 | Withasomnine | Met 40, Tyr 68, Asp 141, His 142, Trp 143, Lys 144, Tyr 147, Asp 169, Asn 170, Cys 173, Pro 174, Gly 175, Ala 176 | Tyr68 | O---NH | 2.58 |
| 10 | Withaphysalin F | Met 40, Tyr 68, Asp 141, His 142, Trp 143, Lys 144, Asp 145, Tyr 147, Asn 170, Pro 174, Ala 176 | Tyr 68 | O---OH | 2.66 |
| Asp141 | O---OH | 2.45 | |||
| His142 | O---HO | 3.13 | |||
| Lys144 | O---N | 3.00 |
COMT, catechol-O-methyltransferase.
Fig. 4.Atomic interaction including h-bond between 10 phytochemicals (withaphysalin O, withasomnine, withaphysalin F, withaphysalin M, withaferinA, withacnistin, withaphysalin C, withaphysalin D, withanolideB, and withaphysalin N) and human catechol-O-methyltransferase enzyme are depicted.
Fig. 5.Root mean square deviation plot of all 10 individual phytochemicals (A) and S-adenosylmethionine (SAM) in their respective enzyme-ligand-SAM complex (B) are depicted.
Pharmacophoric aspects of 10 Withania somnifera plant phyochemicals were summarized
| No. | Phytochemical | AR | HBD | HBA | HY |
|---|---|---|---|---|---|
| 1 | Withaphysalin M | 0 | 1 | 4 | 8 |
| 2 | Withaphysalin N | 0 | 1 | 4 | 8 |
| 3 | Withaphysalin F | 0 | 2 | 4 | 8 |
| 4 | Withaphysalin O | 0 | 1 | 5 | 9 |
| 5 | Withaphysalin C | 0 | 2 | 4 | 6 |
| 6 | Withaphysalin D | 0 | 1 | 3 | 8 |
| 7 | Withanolide B | 0 | 1 | 3 | 9 |
| 8 | Withaferin A | 0 | 2 | 3 | 8 |
| 9 | Withacnistin | 0 | 1 | 4 | 9 |
| 10 | Withasomnine | 1 | 1 | 1 | 1 |
AR, aromatic ring; HBD, hydrogen bond donner; HBA, hydrogen bond acceptor; HY, hydrophobic feature.
Fig. 6.Predicted 3D pharmacophoric features of 10 different phytochemicals are represented: withaphysalin M (A), withaphysalin N (B), withaphysalin F (C), withaphysalin O (D), withaphysalin C (E), withaphysalin D (F), withanolide B (G), withaferin A (H), withacnistin (I), and withasomnine (J). The aromatic ring, hydrophobic feature, hydrogen bond donor and hydrogen bond acceptors are shown in purple, green, white and gold spheres, respectively. The arrows presented here for the constraint direction.