AbstractWe performed all-atom molecular dynamics simulations studying the partition of ions and the ionic current through the bacterial porin OmpF and two selected mutants. The study is motivated by new, interesting experimental findings concerning their selectivity and conductance behavior at neutral pH. The mutations considered here are designed to study the effect of removal of negative charges present in the constriction zone of the wild-type OmpF channel (which contains, on one side, a cluster with three positive residues, and on the other side, two negatively charged residues). Our results show that these mutations induce an exclusion of cations from the constriction zone of the channel, substantially reducing the flow of cations. In ...
OmpF is a wide channel bacterial porin frequently employed to study selective ionic translocation. T...
AbstractSeveral groups, including our own, have found molecular dynamics (MD) calculations to result...
Porins are channel-forming proteins that are located in the outer membranes (OM) of Gram-negative ba...
AbstractWe performed all-atom molecular dynamics simulations studying the partition of ions and the ...
AbstractAll-atom molecular dynamics simulations of the ion current through OmpF, the major porin in ...
The preference of large protein ion channels for cations or anions is mainly determined by the elect...
AbstractThe strongly anion-selective porin channel Omp32 from the bacterium Delftia acidovorans diff...
OmpF, a multiionic porin from <i>Escherichia coli</i>, is a useful protypical model system for addre...
Electrophysiological characterization of large protein channels, usually displaying multi-ionic tran...
AbstractThe temperature-dependent ion conductance of OmpC, a major outer membrane channel of Escheri...
We have studied the dynamics of chloride and potassium ions in the interior of the Outer membrane po...
The preference of large protein ion channels for cations or anions is mainly determined by the elect...
In contrast to the highly-selective channels of neurophysiology employing mostly the exclusion mecha...
Ion channels are hollow proteins that have evolved to exhibit discrimination between charged solutes...
AbstractPorins are channel-forming proteins that are located in the outer membranes (OM) of Gram-neg...
OmpF is a wide channel bacterial porin frequently employed to study selective ionic translocation. T...
AbstractSeveral groups, including our own, have found molecular dynamics (MD) calculations to result...
Porins are channel-forming proteins that are located in the outer membranes (OM) of Gram-negative ba...
AbstractWe performed all-atom molecular dynamics simulations studying the partition of ions and the ...
AbstractAll-atom molecular dynamics simulations of the ion current through OmpF, the major porin in ...
The preference of large protein ion channels for cations or anions is mainly determined by the elect...
AbstractThe strongly anion-selective porin channel Omp32 from the bacterium Delftia acidovorans diff...
OmpF, a multiionic porin from <i>Escherichia coli</i>, is a useful protypical model system for addre...
Electrophysiological characterization of large protein channels, usually displaying multi-ionic tran...
AbstractThe temperature-dependent ion conductance of OmpC, a major outer membrane channel of Escheri...
We have studied the dynamics of chloride and potassium ions in the interior of the Outer membrane po...
The preference of large protein ion channels for cations or anions is mainly determined by the elect...
In contrast to the highly-selective channels of neurophysiology employing mostly the exclusion mecha...
Ion channels are hollow proteins that have evolved to exhibit discrimination between charged solutes...
AbstractPorins are channel-forming proteins that are located in the outer membranes (OM) of Gram-neg...
OmpF is a wide channel bacterial porin frequently employed to study selective ionic translocation. T...
AbstractSeveral groups, including our own, have found molecular dynamics (MD) calculations to result...
Porins are channel-forming proteins that are located in the outer membranes (OM) of Gram-negative ba...