Midgley Scott D, Bariami Sofia, Habgood Matthew, Mackey Mark
Cresset, New Cambridge House, Bassingbourn Road, Litlington SG8 0O5, Cambridgeshire, United Kingdom.
J Chem Inf Model. 2025 Jan 27;65(2):512-516. doi: 10.1021/acs.jcim.4c01668. Epub 2025 Jan 9.
Recent increases in the availability of computational power have improved the accessibility of ligand-protein relative binding free energy (RBFE) calculations; however, these calculations remain resource-intensive, which can limit their practical application. RBFE calculations typically use a set of thermodynamic intermediates mediated by the transformation coordinate λ. Optimizing λ offers a way to tune the computational efforts required for a given RBFE calculation. Here, we present Adaptive Lambda Scheduling (ALS), a streamlined approach for on-the-fly bespoke λ scheduling. We show it can achieve substantial reductions in computational cost while retaining predictive performance.
近年来,计算能力的提升改善了配体 - 蛋白质相对结合自由能(RBFE)计算的可及性;然而,这些计算仍然资源密集,这可能会限制它们的实际应用。RBFE计算通常使用由变换坐标λ介导的一组热力学中间体。优化λ提供了一种调整给定RBFE计算所需计算量的方法。在此,我们提出了自适应λ调度(ALS),这是一种用于实时定制λ调度的简化方法。我们表明它可以在保持预测性能的同时大幅降低计算成本。