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Updated: Jul 23, 2025

Incorporating Target Protein Structure Flexibility and Dynamics in Computational Drug Discovery Using Ensemble-Based Docking Analysis
Published on: June 20, 2025
Effect of preprocessing and simulation parameters on the performance of molecular docking studies
Pedro Henrique Callil-Soares1, Lilian Caroline Kramer Biasi2, Pedro de Alcântara Pessoa Filho1
1Chemical Engineering Department, Polytechnic School of the University of São Paulo, Av. Lineu Prestes, 580, São Paulo, 05508-000, Brazil.
Optimizing molecular docking requires careful preprocessing and parameter selection. Correctly setting parameters like hydrogen atom inclusion and molecular dynamics constraints significantly impacts docking performance and accuracy.
Area of Science:
- Computational Chemistry
- Structural Biology
- Drug Discovery
Background:
- Molecular docking is a rapid computational tool for analyzing molecular interactions.
- Accurate application of molecular docking depends heavily on proper molecule preprocessing and simulation parameter selection.
- Incorrect parameter choices can negatively impact the reliability of molecular docking results.
Purpose of the Study:
- To investigate the impact of various preprocessing and simulation parameters on molecular docking performance.
- To clarify how different parameters influence the accuracy of docking predictions.
- To provide guidance on optimizing molecular docking simulations for better results.
Main Methods:
- Analyzed molecular docking using AutoDock Vina and AutoDock-GPU software.
- Redocked 90 receptor-ligand complexes, evaluating root mean square deviation (RMSD).
- Investigated effects of hydrogen atoms, partial charges, search box parameters, ligand characteristics, and molecular dynamics.
Main Results:
- Inclusion of hydrogen atoms generally improved redocking scores.
- Molecular dynamics simulations require specific constraints to avoid performance degradation.
- Parameter choices significantly influenced the predictive accuracy of molecular docking.
Conclusions:
- Preprocessing and parameter selection are critical for reliable molecular docking.
- Optimizing parameters such as hydrogen atom inclusion and molecular dynamics protocols enhances docking accuracy.
- This study highlights key factors for improving the utility of molecular docking in research.
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