Computing rates and understanding unbinding mechanism in host-guest systems
arXiv:2111.07300
Abstract
The long timescale associated with ligand residence times renders their computation challenging. Therefore, the influence of factors like solvation and steric hindrance on residence times are not fully understood. Here, we demonstrate in a set of model host-guest systems that the recently developed Gaussian Mixture Based Enhanced Sampling allows residence times to be computed and enables understanding their unbinding mechanism. We observe that guest unbinding often proceeds via a series of intermediate states that can be labelled by the number of water molecules present in the binding cavity. And in several cases the residence time is correlated to the water trapping times in the cavity.
11 pages, including Supplementary Information, 5 figures
References in corpus (7)
- Canonical sampling through velocity-rescaling
- Rethinking Metadynamics: from bias potentials to probability distributions
- Caliber based spectral gap optimization of order parameters (SGOOP) for sampling complex molecular systems
- Data-Driven Collective Variables for Enhanced Sampling
- The role of water and steric constraints in the kinetics of cavity-ligand unbinding
- Gaussian Mixture Based Enhanced Sampling
- Variationally Optimized Free Energy Flooding for Rate Calculation