Potassium Channel: Difference between revisions

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      Overall, Potassium channels are remarkable structures that allow for near diffusion limit transfer of molecules with sub-angstrom specificity. Our understanding of the structure of Potassium Channels has opened up the potential for [[Pharmaceutical drugs|therapeutic intervention]] into Potassium channel related diseases.  
      Overall, Potassium channels are remarkable structures that allow for near diffusion limit transfer of molecules with sub-angstrom specificity. Our understanding of the structure of Potassium Channels has opened up the potential for [[Pharmaceutical drugs|therapeutic intervention]] into Potassium channel related diseases.  


See also [[Potassium channel Xavier]].
See also [[Potassium channel Xavier]]<br />
[[Eag domain-CNBHD complex of the mouse EAG1]].
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Revision as of 09:56, 13 January 2019

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

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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 13-January-2019

Additional Resources

References

Proteopedia Page Contributors and Editors (what is this?)

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