AbstractThe temperature-dependent ion conductance of OmpC, a major outer membrane channel of Escherichia coli, is predicted using all-atom molecular dynamics simulations and experimentally verified. To generalize previous results, OmpC is compared to its structural homolog OmpF at different KCl concentrations, pH values, and a broad temperature range. At low salt concentrations and up to room temperature, the molecular modeling predicts the experimental conductance accurately. At high salt concentrations above 1 M KCl and above room temperature, the simulations underestimate the conductance. Moreover, the temperature dependence of the channel conductance is different from that of the bulk, both in experiment and simulation, indicating a str...
AbstractThe temperature dependence of single-channel conductance and open probability for outer memb...
AbstractThe strongly anion-selective porin channel Omp32 from the bacterium Delftia acidovorans diff...
In Gram-negative bacteria, the Outer membrane (OM) acts as a first barrier to screen unwanted compou...
AbstractThe temperature-dependent ion conductance of OmpC, a major outer membrane channel of Escheri...
AbstractAll-atom molecular dynamics simulations of the ion current through OmpF, the major porin in ...
OmpF and OmpC porin channels are responsible for the passage of small hydrophilic solutes across the...
AbstractWe performed all-atom molecular dynamics simulations studying the partition of ions and the ...
OmpF an outer-membrane porin channel of _E. Coli_ posses beta-barrel structure, whose conductivity a...
Molecular dynamics simulations were used to study the structure and dynamics of the Escherichia coli...
AbstractDiscrepancies were noted in the published conductance of the Escherichia coli porin OmpF. Re...
Abstract Temperature dependent ion conductance in nanopores is measured in a wide range of electroly...
Porins are channel-forming proteins that are located in the outer membranes (OM) of Gram-negative ba...
AbstractIn this paper we study the properties of pores formed by OmpF porin from Escherichia coli, b...
In this paper we study the properties of pores formed by OmpF porin from Escherichia coli, based on ...
AbstractPorins are channel-forming proteins that are located in the outer membranes (OM) of Gram-neg...
AbstractThe temperature dependence of single-channel conductance and open probability for outer memb...
AbstractThe strongly anion-selective porin channel Omp32 from the bacterium Delftia acidovorans diff...
In Gram-negative bacteria, the Outer membrane (OM) acts as a first barrier to screen unwanted compou...
AbstractThe temperature-dependent ion conductance of OmpC, a major outer membrane channel of Escheri...
AbstractAll-atom molecular dynamics simulations of the ion current through OmpF, the major porin in ...
OmpF and OmpC porin channels are responsible for the passage of small hydrophilic solutes across the...
AbstractWe performed all-atom molecular dynamics simulations studying the partition of ions and the ...
OmpF an outer-membrane porin channel of _E. Coli_ posses beta-barrel structure, whose conductivity a...
Molecular dynamics simulations were used to study the structure and dynamics of the Escherichia coli...
AbstractDiscrepancies were noted in the published conductance of the Escherichia coli porin OmpF. Re...
Abstract Temperature dependent ion conductance in nanopores is measured in a wide range of electroly...
Porins are channel-forming proteins that are located in the outer membranes (OM) of Gram-negative ba...
AbstractIn this paper we study the properties of pores formed by OmpF porin from Escherichia coli, b...
In this paper we study the properties of pores formed by OmpF porin from Escherichia coli, based on ...
AbstractPorins are channel-forming proteins that are located in the outer membranes (OM) of Gram-neg...
AbstractThe temperature dependence of single-channel conductance and open probability for outer memb...
AbstractThe strongly anion-selective porin channel Omp32 from the bacterium Delftia acidovorans diff...
In Gram-negative bacteria, the Outer membrane (OM) acts as a first barrier to screen unwanted compou...