AbstractSKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. They belong to the Shaker superfamily of voltage-dependent K+ channels. Channels of this class are composed of four α-subunits and subunit assembly is a prerequisite for channel function. In this study the assembly mechanism of SKOR was investigated using the yeast two-hybrid system and functional assays in Xenopus oocytes and in yeast. We demonstrate that SKOR and GORK physically interact and assemble into heteromeric Kout channels. Deletion mutants and chimeric proteins generated from SKOR and the Kin channel α-subunit KAT1 revealed that the cytoplasmic C-terminus of SKOR determines channel assembly. Two domains that are crucial for channel as...
A functional Shaker potassium channel requires assembly of four α-subunits encoded by a single gene ...
International audienceA functional Shaker potassium channel requires assembly of four α-subunits enc...
Shaker K+ channels form the major K+ conductance of the plasma membrane in plants. They are composed...
SKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. They belong...
SKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. They belong...
AbstractSKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. The...
Members of the Shaker-like plant K+ channel family share a common structure, but are highly diverse ...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
AbstractFunctional heteromeric plant Shaker potassium channels can be formed by the assembly of subu...
AbstractVoltage-gated potassium channels are formed by the assembly of four identical (homotetramer)...
• The family of voltage-gated potassium channels in plants presumably evolved from a common ancestor...
Assembly of plant Shaker subunits as heterotetramers, increasing channel functional diversity, has b...
AbstractVoltage-gated potassium channels are formed by the assembly of four identical (homotetramer)...
The family of voltage-gated (Shaker-like) potassium channels in plants includes both inward-rectifyi...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
A functional Shaker potassium channel requires assembly of four α-subunits encoded by a single gene ...
International audienceA functional Shaker potassium channel requires assembly of four α-subunits enc...
Shaker K+ channels form the major K+ conductance of the plasma membrane in plants. They are composed...
SKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. They belong...
SKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. They belong...
AbstractSKOR and GORK are outward-rectifying plant potassium channels from Arabidopsis thaliana. The...
Members of the Shaker-like plant K+ channel family share a common structure, but are highly diverse ...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
AbstractFunctional heteromeric plant Shaker potassium channels can be formed by the assembly of subu...
AbstractVoltage-gated potassium channels are formed by the assembly of four identical (homotetramer)...
• The family of voltage-gated potassium channels in plants presumably evolved from a common ancestor...
Assembly of plant Shaker subunits as heterotetramers, increasing channel functional diversity, has b...
AbstractVoltage-gated potassium channels are formed by the assembly of four identical (homotetramer)...
The family of voltage-gated (Shaker-like) potassium channels in plants includes both inward-rectifyi...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
A functional Shaker potassium channel requires assembly of four α-subunits encoded by a single gene ...
International audienceA functional Shaker potassium channel requires assembly of four α-subunits enc...
Shaker K+ channels form the major K+ conductance of the plasma membrane in plants. They are composed...