Potassium Channel: Difference between revisions

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**[[3k03]], [[3k04]], [[3k06]], [[3k08]], [[3k0d]], [[3k0g]] – BcNaK<br />
**[[3k03]], [[3k04]], [[3k06]], [[3k08]], [[3k0d]], [[3k0g]] – BcNaK<br />
**[[3t1c]], [[3t2m]], [[3t4d]], [[3t4z]], [[3tcu]], [[3tet]] – BcNaK (mutant)
**[[3t1c]], [[3t2m]], [[3t4d]], [[3t4z]], [[3tcu]], [[3tet]] – BcNaK (mutant)
*Potassium/Sodium hyperpolarization-activated cyclic nucleotide-gated channel or cyclic nucleotide-gated channel or HCN channel see [[Ion channels]]


*Calcium-activated KCh
*Calcium-activated KCh
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**[[3sjq]], [[4g27]], [[4g28]], [[4j9y]], [[4j9z]] - rKCh calmodulin-binding domain + calmodulin<br />
**[[3sjq]], [[4g27]], [[4g28]], [[4j9y]], [[4j9z]] - rKCh calmodulin-binding domain + calmodulin<br />
**[[2pnv]] – rKCh leucine zipper domain SKCa  
**[[2pnv]] – rKCh leucine zipper domain SKCa  
*Potassium/Sodium hyperpolarization-activated cyclic nucleotide-gated channel or cyclic nucleotide-gated channel or HCN channel see [[Ion channels]]
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Revision as of 09:59, 4 December 2014

Structure of the Potassium Channel complex with K+ ions, (2r9r)

Drag the structure with the mouse to rotate

Page Development

This article was developed based on lectures given in Chemistry 543 by Prof. Clarence E. Schutt at Princeton University.


Potassium channels (KCh) are subdivided into voltage-gated KCh and calcium-dependent KCh. The latter are subdivided into high- (BK, LKCa), intermediate- and small-conductance KCh (human SK1, rat SK2, SKCa). The T1 domain is a highly conserved N-terminal domain which is responsible for driving the tetramerization of the KCh α subunit. The inward rectifier KCh (IRK) passes current more easily in the inward direction. MthK is a calcium-dependent KCh from Methanobacterium thermoautrophicum.

3D structures of Potassium Channels

Updated on 04-December-2014

Additional Resources

For Additional Information, See: Membrane Channels & Pumps

References

Proteopedia Page Contributors and Editors (what is this?)

David Canner, Alexander Berchansky, Ann Taylor, Michal Harel, Joel L. Sussman