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◆ Biochemical and biophysical research communications2026-07-24

Repurposing nucleos(t)ide analogs as purine nucleoside phosphorylase inhibitors through Gaussian accelerated molecular dynamics simulations.

Tushar Gupta, Priyanka Sharma, Chinmayee Tiwari, Sheeba Malik, Pradeep Pant

原始摘要(英文原文)· Original abstract
Purine nucleoside phosphorylase (PNP) is a key enzyme in the purine salvage pathway and a promising therapeutic target for T-cell-mediated disorders such as leukemia, lymphoma, psoriasis, and rheumatoid arthritis. We used an integrated computational drug-repurposing approach to identify nucleos(t)ide analogs with inhibitory potential against human PNP. A library of approximately 800 nucleos(t)ide analogs underwent machine learning-assisted virtual screening, and the top 20 candidates were further evaluated by molecular docking. The four highest-ranked compounds, based on docking scores (-7.8 to -10.0 kcal/mol), were selected for 500 ns long Gaussian accelerated molecular dynamics (GaMD) simulations. We estimated binding free energies using trajectory-based MM-PBSA calculations and supplemented these with AI-assisted affinity predictions from SG-ML-PLAP and K-DEEP. Among the compounds, 6-hydroxy-flavin adenine dinucleotide (C2) showed the most favorable binding profile, although flavin adenine dinucleotide (C1) had the best docking score (-10.0 kcal/mol). C2 achieved a trajectory-based PBSA binding free energy of -17.23 ± 3.45 kcal/mol, significantly better than the reference inhibitor Immucillin-H (-8.11 ± 2.56 kcal/mol). The other lead compounds, C1, C3, and C4, also demonstrated favorable PBSA binding free energies of -12.90 ± 5.05 kcal/mol, -11.71 ± 3.64 kcal/mol, and -13.19 ± 3.56 kcal/mol, respectively. These results indicate that combining machine learning-assisted screening, molecular docking, enhanced molecular dynamics simulations, MM-PBSA calculations, along with AI-based affinity predictions is an effective strategy for identifying promising nucleos(t)ide analogs for future experimental validation as human PNP inhibitors.
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Repurposing nucleos(t)ide analogs as purine nucleoside phosphorylase inhibitors through Gaussian accelerated molecular dynamics simulations. — 科研速览 Science Skim