K+ and Rb+ conductances (GK+ and GRb+) were investigated in two delayed rectifier K+ channels (Kv2.1 and Kv3.1) cloned from rat brain and a chimera (CHM) of the two channels formed by replacing the putative pore region of Kv2.1 with that of Kv3.1. CHM displayed ion conduction properties which resembled Kv3.1. In CHM, GK+ was three times greater than that of Kv2.1 and GRb+/GK+ = 0.3 (compared with 1.5 and 0.7, respectively, in Kv2.1 and Kv3.1). A point mutation in CHM L374V, which restored 374 to its Kv2.1 identity, switched the K+/Rb+ conductance profiles so that GK+ was reduced fourfold, GRb+ was increased twofold, and GRb+/GK+ = 2.8. Quantitative restoration of the Kv2.1 K+/Rb+ profiles, however, required simultaneous point mutations at t...
AbstractIn epithelial Kir7.1 channels a non-conserved methionine in the outer pore region adjacent t...
AbstractTwo-pore domain K+ (K2P) channels have been cloned from a variety of species and tissues. Th...
Voltage-dependent K 1 channel gating is influenced by the permeating ions. Extracellular K 1 determi...
Inwardly rectifying K+ channels are highly selective for K+ ions and show strong interaction with io...
The loop between transmembrane regions S5 and S6 (P-region) of voltage-gated K+ channels has been pr...
Pore properties that distinguish two cloned, voltage-gated K+ channels, Kv2.1 and Kv3.1, include sin...
In a chimeric, voltage-dependent K+ channel (CHM), the valine at position 369 and the leucine at pos...
AbstractInward rectifier potassium (Kir) channels act as cellular diodes, allowing unrestricted flow...
AbstractWe have cloned a novel K+-selective, inward rectifier channel that is widely expressed in br...
Interaction between the selectivity filter and the adjacent pore helix of voltage-gated K+ (Kv) chan...
SummaryIon channels lower the energetic barrier for ion passage across cell membranes and enable the...
The pore region of the majority of K+ channels contains the highly conserved GYGD sequence, known as...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractUsing cysteine (Cys) scanning mutagenesis of the inward rectifier K+ channel Kir2.1, we inve...
Potassium (i.e., K+) channels allow for the controlled and selective passage of potassium ions acros...
AbstractIn epithelial Kir7.1 channels a non-conserved methionine in the outer pore region adjacent t...
AbstractTwo-pore domain K+ (K2P) channels have been cloned from a variety of species and tissues. Th...
Voltage-dependent K 1 channel gating is influenced by the permeating ions. Extracellular K 1 determi...
Inwardly rectifying K+ channels are highly selective for K+ ions and show strong interaction with io...
The loop between transmembrane regions S5 and S6 (P-region) of voltage-gated K+ channels has been pr...
Pore properties that distinguish two cloned, voltage-gated K+ channels, Kv2.1 and Kv3.1, include sin...
In a chimeric, voltage-dependent K+ channel (CHM), the valine at position 369 and the leucine at pos...
AbstractInward rectifier potassium (Kir) channels act as cellular diodes, allowing unrestricted flow...
AbstractWe have cloned a novel K+-selective, inward rectifier channel that is widely expressed in br...
Interaction between the selectivity filter and the adjacent pore helix of voltage-gated K+ (Kv) chan...
SummaryIon channels lower the energetic barrier for ion passage across cell membranes and enable the...
The pore region of the majority of K+ channels contains the highly conserved GYGD sequence, known as...
AbstractKCNQ3 homomeric channels yield very small macroscopic currents compared with other KCNQ chan...
AbstractUsing cysteine (Cys) scanning mutagenesis of the inward rectifier K+ channel Kir2.1, we inve...
Potassium (i.e., K+) channels allow for the controlled and selective passage of potassium ions acros...
AbstractIn epithelial Kir7.1 channels a non-conserved methionine in the outer pore region adjacent t...
AbstractTwo-pore domain K+ (K2P) channels have been cloned from a variety of species and tissues. Th...
Voltage-dependent K 1 channel gating is influenced by the permeating ions. Extracellular K 1 determi...