AbstractRedox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibrio vulgaris Hildenborough are here analyzed using theoretical methodologies. Various complexes were generated using rigid-body docking techniques, and the two lowest energy complexes (1 and 2) were relaxed using molecular dynamics simulations with explicit solvent and subjected to further characterization. Complex 1 corresponds to an interaction between hemes I from both cytochromes c3. Complex 2 corresponds to an interaction between the heme IV from type I and the heme I from type II cytochrome c3. Binding free energy calculations using molecular mechanics, Poisson-Boltzmann, and surface accessibility methods show that complex 2 is more stab...
<div><p>The fast development of software and hardware is notably helping in closing the gap between ...
Electron transfer between heme proteins with mediators plays an important role in the fabrication of...
Cytochrome c(3) is a 14 kDa tetrahaem protein that plays a central role in the bioenergetic metaboli...
AbstractRedox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibr...
To fully understand the structural bases for the mechanisms of biological energy transduction, it is...
In order to understand the mechanisms of biological energy transduction, it is essential to determin...
AbstractA 5-ns molecular dynamics study of a tetraheme cytochrome in fully oxidized and reduced form...
We coupled protein-protein docking procedure with molecular dynamics (MD) simulation to investigate ...
AbstractThe tetrahaem type I cytochromes c3 from Desulfovibrionaceae shuttle electrons from a peripl...
AbstractThe tetraheme cytochrome c3 from Desulfovibrio vulgaris Hildenborough is studied using molec...
AbstractThis article presents an overview of the simulation studies of the behaviour of multihaem cy...
International audienceA three-dimensional model of an electron-transfer complex between the tetrahem...
<div><p>Lying at the heart of many vital cellular processes such as photosynthesis and respiration, ...
Based on the mutational effects on the steady-state kinetics of the electron transfer reaction and o...
Protein–protein complexes are formed via transient states called encounter complexes that greatly in...
<div><p>The fast development of software and hardware is notably helping in closing the gap between ...
Electron transfer between heme proteins with mediators plays an important role in the fabrication of...
Cytochrome c(3) is a 14 kDa tetrahaem protein that plays a central role in the bioenergetic metaboli...
AbstractRedox protein complexes between type I and type II tetraheme cytochromes c3 from Desulfovibr...
To fully understand the structural bases for the mechanisms of biological energy transduction, it is...
In order to understand the mechanisms of biological energy transduction, it is essential to determin...
AbstractA 5-ns molecular dynamics study of a tetraheme cytochrome in fully oxidized and reduced form...
We coupled protein-protein docking procedure with molecular dynamics (MD) simulation to investigate ...
AbstractThe tetrahaem type I cytochromes c3 from Desulfovibrionaceae shuttle electrons from a peripl...
AbstractThe tetraheme cytochrome c3 from Desulfovibrio vulgaris Hildenborough is studied using molec...
AbstractThis article presents an overview of the simulation studies of the behaviour of multihaem cy...
International audienceA three-dimensional model of an electron-transfer complex between the tetrahem...
<div><p>Lying at the heart of many vital cellular processes such as photosynthesis and respiration, ...
Based on the mutational effects on the steady-state kinetics of the electron transfer reaction and o...
Protein–protein complexes are formed via transient states called encounter complexes that greatly in...
<div><p>The fast development of software and hardware is notably helping in closing the gap between ...
Electron transfer between heme proteins with mediators plays an important role in the fabrication of...
Cytochrome c(3) is a 14 kDa tetrahaem protein that plays a central role in the bioenergetic metaboli...