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  4. Study of drug likeness of praziquantel derivatives for the inhibition of thioredoxin peroxidase and aspartic protease in opisthorchis viverrini by molecular docking method
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Study of drug likeness of praziquantel derivatives for the inhibition of thioredoxin peroxidase and aspartic protease in opisthorchis viverrini by molecular docking method

Author(s)
Nusai, Krittaya
Doungdee, Prayong
Rungrotmongkol, Thanyada
Date Issued
January 1, 2017
Type
Article
Abstract
This research aimed to study the effectiveness of eight praziquantel derivatives such as derivatives substituted with-CH 2 (CH 3 ) 2 in R 1 position (ligand G03_R1),-CH 2 CH 2 OCH 3 in R 1 -R 5 positions (ligands G05_R1, G05_R2, G05_R3, G05_R4 and G05_R5) and-CH(NHCH 3 )(COOCH 3 ) in R 3 and R 4 positions (ligands G17_R3 and G17_R4) as a drug for the inhibition of thioredoxin peroxidase and aspartic protease in Opisthorchis viverrini by molecular docking method. It was found that most derivatives could better interact with amino acids in the active site of both types of enzymes than praziquantel. The ligand G03_R1 interaction with both types of enzymes was similar to praziquantel. No interaction of ligands G17_R3 and G17_R4 in the active site of thioredoxin peroxidase was found but they could best interact in the active site of aspartic protease. The ligand G05_R3 could interact with both types of enzymes, and best interact with thioredoxin peroxidase. The interaction energy value of-31.79 was obtained.-CH 2 CH 2 OCH 3 group in ligand G05_R3 bound with amino acids Ser148 and Glu151 in the active site by hydrophobic interaction and the O1 and O33 atoms of this ligand could form hydrogen bonds with the amino acids Ile140 (N) and Thr139 (OG1). Furthermore, the interaction of ligand G05_R3 with aspartic protease was similar to ligands G17_R3 and G17_R4 . The interaction energy value of-39.83 was obtained. Therefore, it was concluded that the derivative, most suitable for development as a drug for inhibiting thioredoxin peroxidase and aspartic protease, was the ligand G05_R3, a PZQ derivative substituted with-CH 2 CH 2 OCH 3 in R3 position.
Citation
Current Applied Science and Technology, 17(1), 87-102, 2017
Subjects

Aspartic protease

Molecular docking met...

Opisthorchis viverrin...

Praziquantel derivati...

Thioredoxin peroxidas...

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