Most potassium channels have two main gate locations, hosting an inner gate at the cytosolic entrance and a filter gate in the selectivity filter; the function of these gates is in many channels coupled. To obtain exclusive insights into the molecular mechanisms that determine opening and closing of the filter gate, we use a combination of single-channel recordings and gating analysis in the minimal viral channel Kcv. This channel has no inner gate and its fast closing at negative voltages can therefore be entirely assigned to the filter gate. We find that mutations of S42 in the pore helix severely slow down closing of this filter gate, an effect which is not correlated with hydrogen bond formation by the amino acid at this position. Hence...
Modal-gating shifts represent an effective regulatory mechanism by which ion channels control the ex...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Voltage-gated potassium (Kv) channels are multi-ion, single-file pores that regulate the transmembra...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
SummaryThe selectivity filter of potassium channels is the structural element directly responsible f...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
SummaryThe selectivity filter of potassium channels is the structural element directly responsible f...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Potassium channels are opened by ligands and/or membrane potential. In voltage-gated K(+) channels a...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Modal-gating shifts represent an effective regulatory mechanism by which ion channels control the ex...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Voltage-gated potassium (Kv) channels are multi-ion, single-file pores that regulate the transmembra...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
SummaryThe selectivity filter of potassium channels is the structural element directly responsible f...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
SummaryThe selectivity filter of potassium channels is the structural element directly responsible f...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Potassium channels are opened by ligands and/or membrane potential. In voltage-gated K(+) channels a...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Modal-gating shifts represent an effective regulatory mechanism by which ion channels control the ex...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Voltage-gated potassium (Kv) channels are multi-ion, single-file pores that regulate the transmembra...