Florian Leidner, Nese Kurt Yilmaz, Janet Paulsen, Yves A. Muller, Celia A. Schiffer
文献索引:10.1021/acs.jctc.8b00097
全文:HTML全文
Water is essential in many biological processes, and the hydration structure plays a critical role in facilitating protein folding, dynamics, and ligand binding. A variety of biophysical spectroscopic techniques have been used to probe the water solvating proteins, often complemented with molecular dynamics (MD) simulations to resolve the spatial and dynamic features of the hydration shell, but comparing relative water structure is challenging. In this study 1 μs MD simulations were performed to identify and characterize hydration sites around HIV-1 protease bound to an inhibitor, darunavir (DRV). The water density, hydration site occupancy, extent and anisotropy of fluctuations, coordinated water molecules, and hydrogen bonds were characterized and compared to the properties of bulk water. The water density of the principal hydration shell was found to be higher than bulk, dependent on the topology and physiochemical identity of the biomolecular surface. The dynamics of water molecules occupying principal hydration sites was highly dependent on the number of water–water interactions and inversely correlated with hydrogen bonds to the protein–inhibitor complex. While many waters were conserved following the symmetry of homodimeric HIV protease, the asymmetry induced by DRV resulted in asymmetric lower-occupancy hydration sites at the concave surface of the active site. Key interactions between water molecules and the protease, that stabilize the protein in the inhibited form, were altered in a drug resistant variant of the protease indicating that modulation of solvent–solute interactions might play a key role in conveying drug resistance. Our analysis provides insights into the interplay between an enzyme inhibitor complex and the hydration shell and has implications in elucidating water structure in a variety of biological processes and applications including ligand binding, inhibitor design, and resistance.
Rapid Sampling of Hydrogen Bond Networks for Computational P...
2018-04-20 [10.1021/acs.jctc.8b00033] |
Water Oxidation Catalysis for NiOOH by a Metropolis Monte Ca...
2018-04-18 [10.1021/acs.jctc.7b01214] |
Lifting the Curse of Dimensionality on Enhanced Sampling of ...
2018-04-18 [10.1021/acs.jctc.7b01289] |
Understanding the Many-Body Basis Set Superposition Error: B...
2018-04-18 [10.1021/acs.jctc.7b01232] |
A Four-Site Molecular Model for Simulations of Liquid Methan...
2018-04-17 [10.1021/acs.jctc.7b01265] |
首页 |
期刊大全 |
MSDS查询 |
化工产品分类 |
生物活性化合物 |
关于我们 |
免责声明:知识产权问题请联系 service1@chemsrc.com
Copyright © 2024 ChemSrc All Rights Reserved