AbstractUsing cysteine (Cys) scanning mutagenesis of the inward rectifier K+ channel Kir2.1, we investigated its pore structure and putative conformational changes. In the background of the Kir2.1 mutant C149F which showed no sensitivity towards Cys-modifying reagents, Cys residues were introduced at 10 positions in the H5 pore region. Out of six functional mutants, T141C and F147C showed clear changes in current amplitude when Cys-modifying reagents were applied from the external side. These results suggest that the corresponding sections of the H5 pore region face to the external side which is in contrast to the results previously obtained for voltage-gated K+ (Kv) channels. Using the mutants T141C and F147C, we investigated whether or no...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
We report the use of cysteine-substituted mutants in conjunction with in situ oxidation to determine...
AbstractUsing cysteine (Cys) scanning mutagenesis of the inward rectifier K+ channel Kir2.1, we inve...
AbstractThe topological model proposed for the Kir2.1 inward rectifier predicts that seven of the ch...
The cytoplasmic domain of inward rectifier K^+ (Kir) channels associates with cytoplasmic ligands an...
AbstractThe topological model proposed for the Kir2.1 inward rectifier predicts that seven of the ch...
Ion channels gate at membrane-embedded domains by changing their conformation along the ion conducti...
AbstractWe used cysteine-modifying reagents to localize the pH-sensitive gate in the renal inward-re...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
AbstractVoltage-activated K+ channels are integral membrane proteins that open or close a K+-selecti...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
My research focuses on understanding the mechanisms of eukaryotic inwardly rectifying potassium chan...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
We report the use of cysteine-substituted mutants in conjunction with in situ oxidation to determine...
AbstractUsing cysteine (Cys) scanning mutagenesis of the inward rectifier K+ channel Kir2.1, we inve...
AbstractThe topological model proposed for the Kir2.1 inward rectifier predicts that seven of the ch...
The cytoplasmic domain of inward rectifier K^+ (Kir) channels associates with cytoplasmic ligands an...
AbstractThe topological model proposed for the Kir2.1 inward rectifier predicts that seven of the ch...
Ion channels gate at membrane-embedded domains by changing their conformation along the ion conducti...
AbstractWe used cysteine-modifying reagents to localize the pH-sensitive gate in the renal inward-re...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
Potassium ion conduction through open potassium channels is essential to control of membrane potenti...
AbstractVoltage-activated K+ channels are integral membrane proteins that open or close a K+-selecti...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
My research focuses on understanding the mechanisms of eukaryotic inwardly rectifying potassium chan...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
1. The molecular basis of selectivity and gating were investigated in wild-type and mutant forms of...
We report the use of cysteine-substituted mutants in conjunction with in situ oxidation to determine...