Abstract
Alchemical absolute binding free energy (ABFE) calculations have substantial potential in drug discovery, but are often prohibitively computationally expensive. To unlock their potential, efficient automated ABFE workflows are required to reduce both computational cost and human intervention. We present a fully-automated ABFE workflow based on the automated selection of λ windows, the ensemble-based detection of equilibration, and the adaptive allocation of sampling time based on inter-replicate
statistics. We find that the automated selection of intermediate states with consistent overlap is rapid, robust, and simple to implement. Robust detection of equilibration
is achieved with a paired t-test between the free energy estimates at initial and final portions of a an ensemble of runs. We determine reasonable default parameters
for all algorithms and show that the full workflow produces equivalent results to a non-adaptive scheme over a variety of test systems, while often accelerating equilibration. Our complete workflow is implemented in the open-source package A3FE (https://github.com/michellab/a3fe).
Supplementary materials
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Supplementary Information for Automated Adaptive Absolute Binding Free Energy Calculations
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A3FE github project repository
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Source code and docs for Automated Adaptive Absolute alchemical Free Energy calculator
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Automated-ABFE-Paper
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Inputs and code to reproduce the results and analysis from "Automated Adaptive Absolute Binding Free Energy Calculations"
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