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Protein-Style Dynamical Transition in a Non-Biological Polymer and a Non-Aqueous Solvent.
Mamontov, E; Sharma, V K; Borreguero, J M; Tyagi, M.
Affiliation
  • Mamontov E; Chemical and Engineering Materials Division, Neutron Sciences Directorate, Oak Ridge National Laboratory , Oak Ridge, Tennessee 37831, United States.
  • Sharma VK; Biology and Soft Matter Division, Neutron Sciences Directorate, Oak Ridge National Laboratory , Oak Ridge, Tennessee 37831, United States.
  • Borreguero JM; Solid State Physics Division, Bhabha Atomic Research Centre , Mumbai 400085, India.
  • Tyagi M; Neutron Data Analysis and Visualization Division, Neutron Sciences Directorate, Oak Ridge National Laboratory , Oak Ridge, Tennessee 37831, United States.
J Phys Chem B ; 120(12): 3232-9, 2016 Mar 31.
Article in En | MEDLINE | ID: mdl-26977709
Temperature-dependent onset of apparent anharmonicity in the microscopic dynamics of hydrated proteins and other biomolecules has been known as protein dynamical transition for the last quarter of a century. Using neutron scattering and molecular dynamics simulation, techniques most often associated with protein dynamical transition studies, we have investigated the microscopic dynamics of one of the most common polymers, polystyrene, which was exposed to toluene vapor, mimicking the process of protein hydration from water vapor. Polystyrene with adsorbed toluene is an example of a solvent-solute system, which, unlike biopolymers, is anhydrous and lacks hydrogen bonding. Nevertheless, it exhibits the essential traits of the dynamical transition in biomolecules, such as a specific dependence of the microscopic dynamics of both solvent and host on the temperature and the amount of solvent adsorbed. We conclude that the protein dynamical transition is a manifestation of a universal solvent-solute dynamical relationship, which is not specific to either biomolecules as solute, or aqueous media as solvent, or even a particular type of interactions between solvent and solute.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polystyrenes / Toluene / Proteins / Molecular Dynamics Simulation Language: En Journal: J Phys Chem B Journal subject: QUIMICA Year: 2016 Document type: Article Affiliation country: United States Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polystyrenes / Toluene / Proteins / Molecular Dynamics Simulation Language: En Journal: J Phys Chem B Journal subject: QUIMICA Year: 2016 Document type: Article Affiliation country: United States Country of publication: United States