Abstract:
Here we present a novel method for the analysis of transport processes in proteins and its implementation called CaverDock. Our method is based on a modified molecular do...Show MoreMetadata
Abstract:
Here we present a novel method for the analysis of transport processes in proteins and its implementation called CaverDock. Our method is based on a modified molecular docking algorithm. It iteratively places the ligand along the access tunnel in such a way that the ligand movement is contiguous and the energy is minimized. The result of CaverDock calculation is a ligand trajectory and an energy profile of transport process. CaverDock uses the modified docking program Autodock Vina for molecular docking and implements a parallel heuristic algorithm for searching the space of possible trajectories. Our method lies in between the geometrical approaches and molecular dynamics simulations. Contrary to the geometrical methods, it provides an evaluation of chemical forces. However, it is far less computationally demanding and easier to set up compared to molecular dynamics simulations. CaverDock will find a broad use in the fields of computational enzymology, drug design, and protein engineering. The software is available free of charge to the academic users at https://loschmidt.chemi.muni.cz/caverdock/.
Published in: IEEE/ACM Transactions on Computational Biology and Bioinformatics ( Volume: 17, Issue: 5, 01 Sept.-Oct. 2020)
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- IEEE Keywords
- Index Terms
- Analysis Of Transport ,
- Modulation Of Transport ,
- Novel Method For Analysis ,
- Molecular Dynamics Simulations ,
- Molecular Docking ,
- Energy Profile ,
- Geometric Method ,
- Root Mean Square Error ,
- Instrumentation ,
- Vitamin D ,
- Force Field ,
- Energy Barrier ,
- Local Minima ,
- Lowest Energy ,
- Global Optimization ,
- Binding Free Energy ,
- Automata ,
- Vitamin D Receptor ,
- Real-world Systems ,
- Ligand Conformations ,
- Ligand Position ,
- Cytochrome P450 2E1 ,
- Center Of The Sphere ,
- Flexible Side Chains ,
- Minimum Cut ,
- Number Of Disks ,
- Energetic Profile ,
- Protein Conformation ,
- Part Of The Receptor ,
- PDB Format
- Author Keywords
- MeSH Terms
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Analysis Of Transport ,
- Modulation Of Transport ,
- Novel Method For Analysis ,
- Molecular Dynamics Simulations ,
- Molecular Docking ,
- Energy Profile ,
- Geometric Method ,
- Root Mean Square Error ,
- Instrumentation ,
- Vitamin D ,
- Force Field ,
- Energy Barrier ,
- Local Minima ,
- Lowest Energy ,
- Global Optimization ,
- Binding Free Energy ,
- Automata ,
- Vitamin D Receptor ,
- Real-world Systems ,
- Ligand Conformations ,
- Ligand Position ,
- Cytochrome P450 2E1 ,
- Center Of The Sphere ,
- Flexible Side Chains ,
- Minimum Cut ,
- Number Of Disks ,
- Energetic Profile ,
- Protein Conformation ,
- Part Of The Receptor ,
- PDB Format
- Author Keywords
- MeSH Terms