Two-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with an outwardly rectifying background “leak” conductance. In some K2P channels, strong voltage-dependent activation has been observed, but the mechanism remains unresolved because they lack a canonical voltage-sensing domain. Here, we show voltage-dependent gating is common to most K2P channels and that this voltage sensitivity originates from the movement of three to four ions into the high electric field of an inactive selectivity filter. Overall, this ion-flux gating mechanism generates a one-way “check valve” within the filter because outward movement of K+ induces filter opening, whereas inward movement promotes inactivation. Furthermore, many phy...
The voltage sensitivity of voltage-gated cation channels is primarily attributed to conformational c...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...
SummaryTwo-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with ...
Two-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with an outw...
Two-pore domain (K2P) K(+) channels are major regulators of excitability that endow cells with an ou...
SummaryTwo-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with ...
Two-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with an outw...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Two-pore domain (K2P) K+ channels have many important physiological functions. However, the function...
The ability to conduct potassium ions (K+) selectively in the abundant presence of other ion species...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Two-pore domain (K2P) K+ channels have many important physiological functions. However, the function...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
The voltage sensitivity of voltage-gated cation channels is primarily attributed to conformational c...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...
SummaryTwo-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with ...
Two-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with an outw...
Two-pore domain (K2P) K(+) channels are major regulators of excitability that endow cells with an ou...
SummaryTwo-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with ...
Two-pore domain (K2P) K+ channels are major regulators of excitability that endow cells with an outw...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Two-pore domain (K2P) K+ channels have many important physiological functions. However, the function...
The ability to conduct potassium ions (K+) selectively in the abundant presence of other ion species...
Many potassium channels show voltage-dependent gating without a dedicated voltage sensor domain. Thi...
Two-pore domain (K2P) K+ channels have many important physiological functions. However, the function...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
Potassium two-pore domain (K2P) family ion channels are increasingly appreciated as important electr...
The voltage sensitivity of voltage-gated cation channels is primarily attributed to conformational c...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...
Voltage-gated K+ channels are a family of multi-ion, single file pores that display a high degree of...