Potassium Channel: Difference between revisions

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<StructureSection load='' size='500' side='right' caption='Structure of the Potassium Channel, ([[2r9r]])' scene='Potassium_Channel/Opening/1'>
<StructureSection load='' size='500' side='right' caption='Structure of the Potassium Channel, ([[2r9r]])' scene='Potassium_Channel/Opening/1'>
[[Image:2r9r Picture Proteopedia2.png|250px|left]]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; [[Potassium Channel]]'''s''' control the electric potential across cell membranes by selectively catalyzing the diffusion of K<sup>+</sup> ions down their electrochemical gradient.<ref name="Zhou">PMID: 11689936</ref> K<sup>+</sup> Channels extend across the cell membrane, a 40Å thick lipid bilayer across which ions cannot pass without assistance.<ref name="Doyle">PMID: 9525859</ref> Potassium homeostasis is crucial for nearly all living cells, but is particularly important for the correct function of neurons. Neurons produce electrical impulses known as action potentials, to initiate cellular communication processes like neurotransmitter release or activate intercellular processes muscle contraction. At the onset of an action potential, sodium ions flood across the plasma membrane of neurons via sodium channels. This influx of sodium ions causes the polarity of the plasma membrane to reverse, inactivating sodium channels and activating potassium channels. Potassium channels subsequently open allowing the selective diffusion of K<sup>+</sup> ions across the plasma membrane, returning the membrane polarity to neutral. After the action potential has passed, channels recreate the high potassium concentration within the cell in preparation for the next stiumulus.<ref>PMID:12721618</ref> Mutations in voltage-gated potassium channel KCNC3 have been linked with [[Neurodevelopmental Disorders|neurodevelopmental disorders]] and neurodegeneration.<ref>PMID: 16501573</ref>
[[Image:2r9r Picture Proteopedia2.png|250px|left]]&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; [[Potassium Channel]]'''s''' control the electric potential across cell membranes by selectively catalyzing the diffusion of K<sup>+</sup> ions down their electrochemical gradient.<ref name="Zhou">PMID: 11689936</ref> K<sup>+</sup> Channels extend across the cell membrane, a 40Å thick lipid bilayer across which ions cannot pass without assistance.<ref name="Doyle">PMID: 9525859</ref> Potassium homeostasis is crucial for nearly all living cells, but is particularly important for the correct function of neurons. Neurons produce electrical impulses known as action potentials, to initiate cellular communication processes like neurotransmitter release or activate intercellular processes muscle contraction. At the onset of an action potential, sodium ions flood across the plasma membrane of neurons via sodium channels. This influx of sodium ions causes the polarity of the plasma membrane to reverse, inactivating sodium channels and activating potassium channels. Potassium channels subsequently open allowing the selective diffusion of K<sup>+</sup> ions across the plasma membrane, returning the membrane polarity to neutral. After the action potential has passed, channels recreate the high potassium concentration within the cell in preparation for the next stiumulus.<ref>PMID:12721618</ref> Mutations in voltage-gated potassium channel KCNC3 have been linked with [[Neurodevelopmental Disorders|neurodevelopmental disorders]] and neurodegeneration.<ref>PMID: 16501573</ref>

Revision as of 03:11, 8 March 2011

Structure of the Potassium Channel, (2r9r)

Drag the structure with the mouse to rotate

Additional Structures of Potassium Channels

neurodevelopmental disorders – KCh voltage-sensor paddle domain – NMR
1k4c – BcKCh transmembrane domain – Bacillus cereus
1k4d – BcKCh transmembrane domain +Ca+Na
therapeutic intervention, 2q68, 2q69, 2q6a – BcKCh (mutant)
2ahy – BcKCh+Na
2ahz – BcKCh+K
2pnv – rKCh leucine zipper domain SKCa – rat
2nz0 – hKCh Kv4.3 N-terminal+KV channel interacting protein 1 – human
2i2r - rKCh Kv4.3 N-terminal+KV channel interacting protein 1
1s6c - rKCh Kv4.2 N-terminal+KV channel interacting protein 1
1qx7 – rKCh SKCa+ calmodulin
1g4y – rKCh rSK2 calmodulin binding domain SKCa + calmodulin
1j95 – KCh+K+tetrabutylammonium – Streptomyces lividans
3co2, 1vp6 – MlotiK1 cyclic nucleotide binding domain – Mesorhizobium loti

For Additional Structures, See: Potassium Channels

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