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Insights into molecular interactions between CaM and its inhibitors from molecular dynamics simulations and experimental data
Authors:Martin González-Andrade  Rogelio Rodríguez-Sotres  Abraham Madariaga-Mazón  José Rivera-Chávez  Rachel Mata  Alejandro Sosa-Peinado
Institution:1. Facultad de Medicina, Universidad Nacional Autónoma de México (UNAM), México Distrito Federal, CP 04510, México;2. Unidad de Vinculación de la Facultad de Medicina, UNAM en el INMEGEN, Secretaría de Salud, México Distrito Federal, CP 14610, México;3. Facultad de Química, Universidad Nacional Autónoma de México (UNAM), México Distrito Federal, CP 04510, México
Abstract:In order to contribute to the structural basis for rational design of calmodulin (CaM) inhibitors, we analyzed the interaction of CaM with 14 classic antagonists and two compounds that do not affect CaM, using docking and molecular dynamics (MD) simulations, and the data were compared to available experimental data. The Ca2+-CaM-Ligands complexes were simulated 20 ns, with CaM starting in the “open” and “closed” conformations. The analysis of the MD simulations provided insight into the conformational changes undergone by CaM during its interaction with these ligands. These simulations were used to predict the binding free energies (ΔG) from contributions ΔH and ΔS, giving useful information about CaM ligand binding thermodynamics. The ΔG predicted for the CaM’s inhibitors correlated well with available experimental data as the r2 obtained was 0.76 and 0.82 for the group of xanthones. Additionally, valuable information is presented here: I) CaM has two preferred ligand binding sites in the open conformation known as site 1 and 4, II) CaM can bind ligands of diverse structural nature, III) the flexibility of CaM is reduced by the union of its ligands, leading to a reduction in the Ca2+-CaM entropy, IV) enthalpy dominates the molecular recognition process in the system Ca2+-CaM-Ligand, and V) the ligands making more extensive contact with the protein have higher affinity for Ca2+-CaM. Despite their limitations, docking and MD simulations in combination with experimental data continue to be excellent tools for research in pharmacology, toward a rational design of new drugs.
Keywords:calmodulin  protein-ligand interactions  protein-peptide interactions  MMPBSA  molecular recognition  docking  molecular dynamics  conformational flexibility
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