Water Dispersion Interactions Strongly Influence Simulated Structural Properties of Disordered Protein States
D. E. Shaw Research · Institute of Molecular Biology and Biophysics · +1 more institution
Abstract
Many proteins can be partially or completely disordered under physiological conditions. Structural characterization of these disordered states using experimental methods can be challenging, since they are composed of a structurally heterogeneous ensemble of conformations rather than a single dominant conformation. Molecular dynamics (MD) simulations should in principle provide an ideal tool for elucidating the composition and behavior of disordered states at an atomic level of detail. Unfortunately, MD simulations using current physics-based models tend to produce disordered-state ensembles that are structurally too compact relative to experiments. We find that the water models typically used in MD simulations…
Citation impact
- FWCI
- 29.96
- Percentile
- 100%
- References
- 90
Authors
4Topics & keywords
- Statistical physics
- Molecular dynamics
- Water model
- Dispersion (optics)
- Intrinsically disordered proteins
- Physics
- Chemical physics
- Quantum mechanics
- Clean water and sanitation