Assessment of Halogen Off-Center Point-Charge Models Using Explicit Solvent Simulations.

J Chem Inf Model

BioISI─Instituto de Biosistemas e Ciências Integrativas, Faculdade de Ciências, Universidade de Lisboa, Lisboa 1749-016, Portugal.

Published: December 2023

AI Article Synopsis

  • Halogen compounds can engage in halogen bonding (XBs) with biological targets, necessitating the use of off-center point-charge models to accurately represent their electrostatic characteristics in molecular simulations.
  • This study evaluates three such models to see how well they predict hydration free energies (Δ), which are crucial for validating the effectiveness of force field approaches.
  • Results indicate that while some EP models can slightly enhance Δ predictions for chlorinated compounds, this is primarily due to better hydrogen bond sampling rather than a direct effect on halogen bonds, emphasizing the significance of selecting the right EP model for different halogen types.

Article Abstract

Compounds containing halogens can form halogen bonds (XBs) with biological targets such as proteins and membranes due to their anisotropic electrostatic potential. To accurately describe this anisotropy, off-center point-charge (EP) models are commonly used in force field methods, allowing the description of XBs at the molecular mechanics and molecular dynamics level. Various EP implementations have been documented in the literature, and despite being efficient in reproducing protein-ligand geometries and sampling of XBs, it is unclear how well these EP models predict experimental properties such as hydration free energies (Δ), which are often used to validate force field performance. In this work, we report the first assessment of three EP models using alchemical free energy calculations to predict Δ values. We show that describing the halogen anisotropy using some EP models can lead to a slight improvement in the prediction of the Δ when compared with the models without EP, especially for the chlorinated compounds; however, this improvement is not related to the establishment of XBs but is most likely due to the improvement of the sampling of hydrogen bonds. We also highlight the importance of the choice of the EP model, especially for the iodinated molecules, since a slight tendency to improve the prediction is observed for compounds with a larger σ-hole but significantly worse results were obtained for compounds that are weaker XB donors.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acs.jcim.3c01561DOI Listing

Publication Analysis

Top Keywords

off-center point-charge
8
point-charge models
8
force field
8
models
6
assessment halogen
4
halogen off-center
4
models explicit
4
explicit solvent
4
solvent simulations
4
compounds
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!