The Arabidopsis thaliana KAT1, an inward-rectifying potassium channel, shares molecular features with the Shaker family of outward rectifier K(+) channels. The KAT1 amino-acid sequence reveals the presence of a positively charged S4 and a segment containing the TXGYGD signature sequence in the pore (P) region. To test whether the inward-rectifying properties of KAT1 are due to reverse orientation in the membrane, such that the voltage sensor is oriented in the opposite direction of the electric field compared with the Shaker K(+) channel, we have inserted a flag epitope in the NH(2) terminus or the S3-S4 loop. The KAT1 and tagged constructs expressed functional channels in whole cells, Xenopus oocytes and COS-7. The electrophysiological pro...
In plants a large diversity of inwardly rectifying K+ channels (K(in) channels) has been observed be...
The Arabidopsis thaliana potassium channel KAT1 was expressed and characterized in Chinese hamster o...
AbstractA degenerate oligonucleotide corresponding to the K+ channel signature sequence (TMTTVGYGD) ...
• The family of voltage-gated potassium channels in plants presumably evolved from a common ancestor...
Functioning of ion channels depends not only on the control of their activity but also on their dens...
Functioning of ion channels depends not only on the control of their activity but also on their dens...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Potassium (K+) channels play multiple roles in higher plants, and have been characterized electrophy...
AbstractA degenerate oligonucleotide corresponding to the K+ channel signature sequence (TMTTVGYGD) ...
Voltage-gated potassium (K+) channels are present in all living systems. Despite high structural sim...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
Members of the Shaker-like plant K+ channel family share a common structure, but are highly diverse ...
In plants a large diversity of inwardly rectifying K+ channels (K(in) channels) has been observed be...
The Arabidopsis thaliana potassium channel KAT1 was expressed and characterized in Chinese hamster o...
AbstractA degenerate oligonucleotide corresponding to the K+ channel signature sequence (TMTTVGYGD) ...
• The family of voltage-gated potassium channels in plants presumably evolved from a common ancestor...
Functioning of ion channels depends not only on the control of their activity but also on their dens...
Functioning of ion channels depends not only on the control of their activity but also on their dens...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Animal and plant voltage-gated ion channels share a common architecture. They are made up of four su...
Potassium (K+) channels play multiple roles in higher plants, and have been characterized electrophy...
AbstractA degenerate oligonucleotide corresponding to the K+ channel signature sequence (TMTTVGYGD) ...
Voltage-gated potassium (K+) channels are present in all living systems. Despite high structural sim...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
Members of the Shaker-like plant K(+) channel family share a common structure, but are highly divers...
Members of the Shaker-like plant K+ channel family share a common structure, but are highly diverse ...
In plants a large diversity of inwardly rectifying K+ channels (K(in) channels) has been observed be...
The Arabidopsis thaliana potassium channel KAT1 was expressed and characterized in Chinese hamster o...
AbstractA degenerate oligonucleotide corresponding to the K+ channel signature sequence (TMTTVGYGD) ...