AbstractA new method is presented for simulating the simultaneous binding equilibrium of electrons and protons on protein molecules, which makes it possible to study the full equilibrium thermodynamics of redox and protonation processes, including electron-proton coupling. The simulations using this method reflect directly the pH and electrostatic potential of the environment, thus providing a much closer and realistic connection with experimental parameters than do usual methods. By ignoring the full binding equilibrium, calculations usually overlook the twofold effect that binding fluctuations have on the behavior of redox proteins: first, they affect the energy of the system by creating partially occupied sites; second, they affect its e...
To fully understand the structural bases for the mechanisms of biological energy transduction, it is...
AbstractMolecular dynamics simulation (MD) constitutes an alternative to time-consuming experiments ...
AbstractCooperative effects are fundamental for electroprotonic energy transduction processes, cruci...
AbstractA new method is presented for simulating the simultaneous binding equilibrium of electrons a...
The coupling of protonation and reduction is crucial in many biological charge transfer reactions an...
A comparative study of the pH-dependent redox mechanisms of several members of the cytochrome c3 fam...
AbstractThis article presents an overview of the simulation studies of the behaviour of multihaem cy...
AbstractThe tetraheme cytochrome c3 from Desulfovibrio vulgaris Hildenborough is studied using molec...
AbstractRedox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibr...
AbstractWe have calculated the electrostatic potential and interaction energies of ionizable groups ...
AbstractCalculations of the electrostatic interaction energies for four metalloproteins that carry o...
AbstractThe coupled motion of electrons and protons occurs in many proteins. Using appropriate tools...
AbstractThe membrane-bound enzyme cytochrome c oxidase, the terminal member in the respiratory chain...
AbstractA 5-ns molecular dynamics study of a tetraheme cytochrome in fully oxidized and reduced form...
Abstract: Cytochromes belong to a diverse family of heme-containing redox proteins that function as ...
To fully understand the structural bases for the mechanisms of biological energy transduction, it is...
AbstractMolecular dynamics simulation (MD) constitutes an alternative to time-consuming experiments ...
AbstractCooperative effects are fundamental for electroprotonic energy transduction processes, cruci...
AbstractA new method is presented for simulating the simultaneous binding equilibrium of electrons a...
The coupling of protonation and reduction is crucial in many biological charge transfer reactions an...
A comparative study of the pH-dependent redox mechanisms of several members of the cytochrome c3 fam...
AbstractThis article presents an overview of the simulation studies of the behaviour of multihaem cy...
AbstractThe tetraheme cytochrome c3 from Desulfovibrio vulgaris Hildenborough is studied using molec...
AbstractRedox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibr...
AbstractWe have calculated the electrostatic potential and interaction energies of ionizable groups ...
AbstractCalculations of the electrostatic interaction energies for four metalloproteins that carry o...
AbstractThe coupled motion of electrons and protons occurs in many proteins. Using appropriate tools...
AbstractThe membrane-bound enzyme cytochrome c oxidase, the terminal member in the respiratory chain...
AbstractA 5-ns molecular dynamics study of a tetraheme cytochrome in fully oxidized and reduced form...
Abstract: Cytochromes belong to a diverse family of heme-containing redox proteins that function as ...
To fully understand the structural bases for the mechanisms of biological energy transduction, it is...
AbstractMolecular dynamics simulation (MD) constitutes an alternative to time-consuming experiments ...
AbstractCooperative effects are fundamental for electroprotonic energy transduction processes, cruci...