Path-Based Nonequilibrium Binding Free Energy Estimation, from Protein-Ligand to RNA-Ligand Binding

被引:0
作者
Serra, Eleonora [1 ,2 ]
Ghidini, Alessia [3 ]
Aguti, Riccardo [1 ]
Bernetti, Mattia [2 ,4 ]
Decherchi, Sergio [5 ]
Cavalli, Andrea [2 ,3 ]
机构
[1] Alma Mater Studiorum Univ Bologna, Dept Pharm & Biotechnol FaBiT, I-40126 Bologna, Italy
[2] Fdn Ist Italiano Tecnol, Computat & Chem Biol, I-16163 Genoa, Italy
[3] Ecole Polytech Fed Lausanne, Ctr Europeen Calcul At & Mol CECAM, CH-1015 Lausanne, Switzerland
[4] Univ Urbino Carlo Bo, Dept Biomol Sci, I-61029 Urbino, Italy
[5] Fdn Ist Italiano Tecnol, Data Sci & Computat Facil, I-16163 Genoa, Italy
关键词
MOLECULAR-DYNAMICS; POTENTIAL FUNCTIONS; TARGETING RNA; C-SRC; FORCE; INHIBITION; WATER; ABL;
D O I
10.1021/acs.jcim.5c00452
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
In this study, we addressed the challenge of estimating binding free energies in complex biological systems of pharmaceutical relevance, including both protein-ligand and RNA-ligand complexes. As case studies, we examined the intricate binding of the drug Gleevec to Abl-tyrosine kinase and two ligands binding to the preQ1 RNA riboswitch. By refining our approach based on nonequilibrium steered molecular dynamics simulations and path-based collective variables, we tackled the specific difficulties posed by these systems. In particular, the Abl-Gleevec complex is characterized by significant system size and extensive conformational rearrangements of the protein, whereas the systems involving RNA are characterized by marked conformational flexibility. For the Abl-Gleevec system, our method produced binding free energy estimates closely aligned with experimental values, demonstrating its reliability. For the RNA-ligand complexes investigated, we found that the simpler water model TIP3P yields more accurate free energy estimates than the TIP4P-D model, offering practical insight for future research. In this case, the agreement with the experimental results is reasonable. Overall, this work underscores the effectiveness of the proposed path-based workflow in handling complex biomolecular systems with unique characteristics, enabling systematic binding free energy predictions across a variety of targets.
引用
收藏
页码:6057 / 6072
页数:16
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