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April 29, 20260 citations

Interaction analysis of quinolone alkaloids derived from Euodia fruit with human pancreatic lipase through docking simulation

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KWKaito WatanabeCYChiawen YingHSHayato Suzuki

Key Points

  • This study aims to analyze the interaction of quinolone alkaloids from Euodia fruit with human pancreatic lipase through docking simulations.
  • Performed docking simulations using 33 ligands, including 14 isolated quinolone alkaloids and 19 virtual stereoisomers
  • Classified ligands into three structural groups based on carbon chain saturation and hydroxyl group presence
  • Compared docking results with experimental activity to find correlations.
  • Mol 10 interacted with His151, showing a high docking score despite low experimental activity.
  • Mol 14-1 interacted with His263 and demonstrated strong inhibitory activity, correlating positively with docking scores.
  • Docking scores may not always reflect experimental potency, highlighting the complexity of ligand-residue interactions.

Abstract

Obesity is associated with various metabolic disorders, and pancreatic lipase inhibitors are important therapeutic agents that suppress fat absorption. Quinolone alkaloids isolated from Euodia fruit have been reported to exhibit inhibitory activity against pancreatic lipase. In this study, docking simulations were performed using 33 ligands, including 14 isolated quinolone alkaloids and 19 virtual stereoisomers, against human pancreatic lipase. The ligands were classified into three structural groups based on carbon chain saturation and the presence of hydroxyl groups, and their docking results were compared with experimental activity. Overall, the docking results were consistent with the experimental data, showing positive correlations between structural groups 1 and 3. Notably, Mol 10, which interacted with His151, exhibited a high docking score despite its low experimental activity, whereas Mol 14-1, which interacted with His263, demonstrated strong inhibitory activity and a positive correlation with the docking scores. These findings suggest that the docking score may not always strongly correlate with experimental potency, as it can depend on the docking pose. This study highlights the potential of quinolone alkaloids as pancreatic lipase inhibitors and emphasizes the importance of analyzing ligand-residue interactions.

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Cite This Study

Watanabe et al. (2026) studied this question.

synapsesocial.com/papers/69f1a033edf4b46824806e88https://doi.org/10.1051/bioconf/202623202003/pdf
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1AI-assisted molecular design of quinolone alkaloid analogues as pancreatic lipase inhibitor candidates2026
  2. 2Discovery of natural anthraquinones as potent inhibitors against pancreatic lipase: structure-activity relationships and inhibitory mechanism2024 · 4 citations
  3. 3Identification of Novel Piperidine and Pyrrolidine Derivatives as Potent Inhibitors of Pancreatic Lipase-Based Molecular Docking and In Vitro Testing2025 · 1 citations
  4. 4Identification of Novel Thiazolidinedione Based Pancreatic Lipase Inhibitors for the Management of Obesity Using In Silico Approach2024 · 5 citations
  5. 5Structural‐Based Design of GLP Inhibitors as Anticancer Agents: A Comprehensive in Silico Study Integrating 3D‐QSAR, Molecular Docking, MD Simulations, and Quantum Mechanical Calculations2026