AbstractK+ ions seemingly permeate K-channels rapidly because channel binding sites mimic coordination of K+ ions in water. Highly selective ion discrimination should occur when binding sites form rigid cavities that match K+, but not the smaller Na+, ion size or when binding sites are composed of specific chemical groups. Although conceptually attractive, these views cannot account for critical observations: 1), K+ hydration structures differ markedly from channel binding sites; 2), channel thermal fluctuations can obscure sub-Ångström differences in ion sizes; and 3), chemically identical binding sites can exhibit diverse ion selectivities. Our quantum mechanical studies lead to a novel paradigm that reconciles these observations. We find...
AbstractPotassium channels are exquisitely selective, allowing K+ to pass across cell membranes whil...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
AbstractK+ ions seemingly permeate K-channels rapidly because channel binding sites mimic coordinati...
Potassium (K-) channels catalyze K+ ion permeation across cellular membranes while simultaneously di...
AbstractThe macroscopic ion-selective behavior of K+ channels is mediated by a multitude of physiolo...
Quantum mechanics/molecular mechanics (QM/MM) Car-Parrinello simulations were performed to estimate ...
AbstractHow K+ channels are able to conduct certain cations yet not others remains an important but ...
How K(+) channels are able to conduct certain cations yet not others remains an important but unreso...
AbstractThe macroscopic ion-selective behavior of K+ channels is mediated by a multitude of physiolo...
Ion channels form pores across the lipid bilayer, selectively allowing inorganic ions to cross the m...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
AbstractPotassium channels are exquisitely selective, allowing K+ to pass across cell membranes whil...
AbstractPotassium channels are exquisitely selective, allowing K+ to pass across cell membranes whil...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
AbstractK+ ions seemingly permeate K-channels rapidly because channel binding sites mimic coordinati...
Potassium (K-) channels catalyze K+ ion permeation across cellular membranes while simultaneously di...
AbstractThe macroscopic ion-selective behavior of K+ channels is mediated by a multitude of physiolo...
Quantum mechanics/molecular mechanics (QM/MM) Car-Parrinello simulations were performed to estimate ...
AbstractHow K+ channels are able to conduct certain cations yet not others remains an important but ...
How K(+) channels are able to conduct certain cations yet not others remains an important but unreso...
AbstractThe macroscopic ion-selective behavior of K+ channels is mediated by a multitude of physiolo...
Ion channels form pores across the lipid bilayer, selectively allowing inorganic ions to cross the m...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
The seeming contradiction that K+ channels conduct K+ ions at maximal throughput rates while not per...
AbstractPotassium channels are exquisitely selective, allowing K+ to pass across cell membranes whil...
AbstractPotassium channels are exquisitely selective, allowing K+ to pass across cell membranes whil...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...