AbstractA low static dielectric permittivity of proteins causes the low reorganization energies for the charge transfer reactions inside them. This reorganization energy does not depend on the pre-existing intraprotein electric field. The charge transferred inside the protein interacts with its aqueous surroundings; for many globular proteins, the effect of this surroundings on the reorganization energy is comparable with the effect of reorganization of the protein itself while for the charge transfer in the middle of membrane the aqueous phase plays a minor role. Reorganization energy depends strongly on the system considered, and hence there is no sense to speak on the “protein reorganization energy” as some permanent characteristic param...
AbstractThe total dielectric response of a protein in due to different kinds of motion each of them ...
AbstractContinuum electrostatic calculation of the transfer energies of anions from water into aprot...
AbstractThe protein matrix of an electron transfer protein creates an electrostatic environment for ...
AbstractA low static dielectric permittivity of proteins causes the low reorganization energies for ...
AbstractThe intramembrane charge transfer has been analyzed in the framework of the ‘fixed-charge-de...
Electron-transfer (ET) reactions are key steps in a diverse array of biological transformations rang...
AbstractThe coupled motion of electrons and protons occurs in many proteins. Using appropriate tools...
Elucidation of the molecular determinants of the reorganization energy λ is central to the understan...
Abstract Studies of biological sciences can be approached in two ways: reductively, as in molecular ...
AbstractThe understanding of protein electron transfer has developed into a powerful formalism where...
Elucidation of the molecular determinants of the reorganization energy \u3bb is central to the under...
A dielectric continuum model is developed for calculating polarization reorganization energies of el...
This paper investigates the microscopic mechanisms of charge screening in proteins. The screening of...
The acceleration of electron transfer (ET) rates in redox proteins relative to aqueous solutes can b...
In an accompanying paper (part 1) we presented a model (NMRES) that describes the coupling of protei...
AbstractThe total dielectric response of a protein in due to different kinds of motion each of them ...
AbstractContinuum electrostatic calculation of the transfer energies of anions from water into aprot...
AbstractThe protein matrix of an electron transfer protein creates an electrostatic environment for ...
AbstractA low static dielectric permittivity of proteins causes the low reorganization energies for ...
AbstractThe intramembrane charge transfer has been analyzed in the framework of the ‘fixed-charge-de...
Electron-transfer (ET) reactions are key steps in a diverse array of biological transformations rang...
AbstractThe coupled motion of electrons and protons occurs in many proteins. Using appropriate tools...
Elucidation of the molecular determinants of the reorganization energy λ is central to the understan...
Abstract Studies of biological sciences can be approached in two ways: reductively, as in molecular ...
AbstractThe understanding of protein electron transfer has developed into a powerful formalism where...
Elucidation of the molecular determinants of the reorganization energy \u3bb is central to the under...
A dielectric continuum model is developed for calculating polarization reorganization energies of el...
This paper investigates the microscopic mechanisms of charge screening in proteins. The screening of...
The acceleration of electron transfer (ET) rates in redox proteins relative to aqueous solutes can b...
In an accompanying paper (part 1) we presented a model (NMRES) that describes the coupling of protei...
AbstractThe total dielectric response of a protein in due to different kinds of motion each of them ...
AbstractContinuum electrostatic calculation of the transfer energies of anions from water into aprot...
AbstractThe protein matrix of an electron transfer protein creates an electrostatic environment for ...