Heterogeneous Preferential
Solvation of Water and
Trifluoroethanol in Homologous Lysozymes
Posted on 2015-12-17 - 03:19
Cytoplasmic
osmolytes can significantly alter the thermodynamic
and kinetic properties of proteins relative to those under dilute
solution conditions. Spectroscopic experiments of lysozymes in cosolvents
indicate that such changes may arise from the heterogeneous, site-specific
hydrophobic interactions between protein surface residues and individual
solvent molecules. In pursuit of an accurate and predictive model
for explaining biomolecular interactions, we study the averaged structural
characteristics of mixed solvents with homologous lysozyme solutes
using all-atom molecular dynamics. By observing the time-averaged
densities of different aqueous solutions of trifluoroethanol, we deduce
trends in the heterogeneous solvent interactions over each protein’s
surface, and investigate how the homology of protein structure does
not necessarily translate to similarities in solvent structure and
compositioneven when observing identical side chains.
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Arthur, Evan J.; King, John T.; Kubarych, Kevin J.; Brooks, Charles L. (2015). Heterogeneous Preferential
Solvation of Water and
Trifluoroethanol in Homologous Lysozymes. ACS Publications. Collection. https://doi.org/10.1021/jp501132z