| Literature DB >> 35597880 |
Phillip S Hudson1, Félix Aviat2, Rubén Meana-Pañeda2, Luke Warrensford3, Benjamin C Pollard3, Samarjeet Prasad2, Michael R Jones2, H Lee Woodcock3, Bernard R Brooks2.
Abstract
Accurately predicting free energy differences is essential in realizing the full potential of rational drug design. Unfortunately, high levels of accuracy often require computationally expensive QM/MM Hamiltonians. Fortuitously, the cost of employing QM/MM approaches in rigorous free energy simulation can be reduced through the use of the so-called "indirect" approach to QM/MM free energies, in which the need for QM/MM simulations is avoided via a QM/MM "correction" at the classical endpoints of interest. Herein, we focus on the computation of QM/MM binding free energies in the context of the SAMPL8 Drugs of Abuse host-guest challenge. Of the 5 QM/MM correction coupled with force-matching submissions, PM6-D3H4/MM ranked submission proved the best overall QM/MM entry, with an RMSE from experimental results of 2.43 kcal/mol (best in ranked submissions), a Pearson's correlation of 0.78 (second-best in ranked submissions), and a Kendall [Formula: see text] correlation of 0.52 (best in ranked submissions).Entities:
Keywords: Binding free energy; Force-matching; Host–guest binding; QM/MM free energy; SAMPL8
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Year: 2022 PMID: 35597880 PMCID: PMC9148874 DOI: 10.1007/s10822-022-00443-8
Source DB: PubMed Journal: J Comput Aided Mol Des ISSN: 0920-654X Impact factor: 4.179