Molecular complexes are constructed to simulate proton transfer channels of the influenza A virus and of the active site of carbonic anhydrase. These complexes consist of proton donor and acceptor groups connected by a chain of water molecules. Quantum chemical calculations on the methylimidazole(H+)H2OCH3COO− model of the M2 virus channel indicate free translational motion of the water molecule between donor and acceptor, as well as concerted transfer of both H-bond protons. The proton transfer barrier does not depend on the position of the bridged water molecule and varies linearly with the difference of electrostatic potentials between the donor and acceptor. When the water chain is elongated, and with various donor and accepto...
AbstractThe structural and dynamical properties of a solvated proton in the influenza A virus M2 cha...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
AbstractThe molecular mechanism for proton conduction along hydrogen-bonded chains, or “proton wires...
Proton transfer (pT) reactions in biochemical processes are often mediated by chains of hydrogen-bon...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
The rapid translocation of H+ along a chain of hydrogen-bonded water molecules, or proton wire, is t...
Ab initio molecular orbital methods are used to calculate potential energy surfaces for proton trans...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
SignificanceThe conduction of protons through the highly restricted paths of transmembrane proteins ...
AbstractThe structural and dynamical properties of a solvated proton in the influenza A virus M2 cha...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
The influenza M2 protein forms a tetrameric proton channel that conducts protons from the acidic end...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
AbstractThe structural and dynamical properties of a solvated proton in the influenza A virus M2 cha...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
AbstractThe molecular mechanism for proton conduction along hydrogen-bonded chains, or “proton wires...
Proton transfer (pT) reactions in biochemical processes are often mediated by chains of hydrogen-bon...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
The rapid translocation of H+ along a chain of hydrogen-bonded water molecules, or proton wire, is t...
Ab initio molecular orbital methods are used to calculate potential energy surfaces for proton trans...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
SignificanceThe conduction of protons through the highly restricted paths of transmembrane proteins ...
AbstractThe structural and dynamical properties of a solvated proton in the influenza A virus M2 cha...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
The influenza M2 protein forms a tetrameric proton channel that conducts protons from the acidic end...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
AbstractThe structural and dynamical properties of a solvated proton in the influenza A virus M2 cha...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...
The case for highly selective long range "proton assisted" electron transfer in biomolecules (PA-ET)...