AbstractA fundamental question associated with the function of ion channels is the conformational changes that allow for reversibly opening/occluding the pore through which the cations permeate. The recently elucidated crystal structures of potassium channels reveal similar structural motifs at their pore-forming regions, suggesting that they share a common gating mechanism. The validity of this hypothesis is explored by analyzing the collective dynamics of five known K+ channel structures. Normal-mode analysis using the Gaussian network model strikingly reveals that all five structures display the same intrinsic motions at their pore-forming region despite the differences in their sequences, structures, and activation mechanisms. Superposi...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
ABSTRACT A fundamental question associated with the function of ion channels is the conformational c...
AbstractA fundamental question associated with the function of ion channels is the conformational ch...
The selectivity filter of potassium channels, the narrowest segment of the pore, permits only potass...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
AbstractPotassium channels play fundamental roles in excitable cells. X-ray structures of bacterial ...
AbstractThe small K+ channel Kcv represents the pore module of complex potassium channels. It was fo...
AbstractCrystal structures have been solved for the transbilayer pore domain of a bacterial K+ chann...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
SummaryX-ray crystallography has provided tremendous insight into the different structural states of...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
ABSTRACT A fundamental question associated with the function of ion channels is the conformational c...
AbstractA fundamental question associated with the function of ion channels is the conformational ch...
The selectivity filter of potassium channels, the narrowest segment of the pore, permits only potass...
Potassium channels are presumed to have two allosterically coupled gates, the activation gate and th...
AbstractPotassium channels play fundamental roles in excitable cells. X-ray structures of bacterial ...
AbstractThe small K+ channel Kcv represents the pore module of complex potassium channels. It was fo...
AbstractCrystal structures have been solved for the transbilayer pore domain of a bacterial K+ chann...
AbstractA high-resolution crystal structure of KvAP, an archeabacterial voltage-gated potassium (Kv)...
SummaryX-ray crystallography has provided tremendous insight into the different structural states of...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...
Potassium channels are transmembrane proteins that facilitate the passive and selective flux of K+ i...