Literature DB >> 22431339

Voltage-gated potassium channels and the diversity of electrical signalling.

Lily Yeh Jan1, Yuh Nung Jan.   

Abstract

Since Hodgkin and Huxley discovered the potassium current that underlies the falling phase of action potentials in the squid giant axon, the diversity of voltage-gated potassium (Kv) channels has been manifested in multiple ways. The large and extended potassium channel family is evolutionarily conserved molecularly and functionally. Alternative splicing and RNA editing of Kv channel genes diversify the channel property and expression level. The mix-and-match of subunits in a Kv channel that contains four similar or identical pore-forming subunits and additional auxiliary subunits further diversify Kv channels. Moreover, targeting of different Kv channels to specific subcellular compartments and local translation of Kv channel mRNA in neuronal processes diversify axonal and dendritic action potentials and influence how synaptic plasticity may be modulated. As one indication of the evolutionary conservation of Kv1 channel functions, mutations of the Shaker potassium channel gene in Drosophila and the KCNA1 gene for its mammalian orthologue, Kv1.1, cause hyperexcitability near axon branch points and nerve terminals, thereby leading to uncontrolled movements and recapitulating the episodic ataxia-1 (EA1) symptoms in human patients.

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Year:  2012        PMID: 22431339      PMCID: PMC3424718          DOI: 10.1113/jphysiol.2011.224212

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  61 in total

1.  Extensive editing of mRNAs for the squid delayed rectifier K+ channel regulates subunit tetramerization.

Authors:  Joshua J C Rosenthal; Francisco Bezanilla
Journal:  Neuron       Date:  2002-05-30       Impact factor: 17.173

2.  A conserved domain in axonal targeting of Kv1 (Shaker) voltage-gated potassium channels.

Authors:  Chen Gu; Yuh Nung Jan; Lily Yeh Jan
Journal:  Science       Date:  2003-08-01       Impact factor: 47.728

Review 3.  Localization of voltage-gated ion channels in mammalian brain.

Authors:  James S Trimmer; Kenneth J Rhodes
Journal:  Annu Rev Physiol       Date:  2004       Impact factor: 19.318

4.  The T1 domain of Kv1.3 mediates intracellular targeting to axons.

Authors:  Jacqueline F Rivera; Po-Ju Chu; Don B Arnold
Journal:  Eur J Neurosci       Date:  2005-10       Impact factor: 3.386

5.  Currents carried by sodium and potassium ions through the membrane of the giant axon of Loligo.

Authors:  A L HODGKIN; A F HUXLEY
Journal:  J Physiol       Date:  1952-04       Impact factor: 5.182

6.  Two mutations of synaptic transmission in Drosophila.

Authors:  Y N Jan; L Y Jan; M J Dennis
Journal:  Proc R Soc Lond B Biol Sci       Date:  1977-07-28

7.  Bidirectional regulation of dendritic voltage-gated potassium channels by the fragile X mental retardation protein.

Authors:  Hye Young Lee; Woo-Ping Ge; Wendy Huang; Ye He; Gordon X Wang; Ashley Rowson-Baldwin; Stephen J Smith; Yuh Nung Jan; Lily Yeh Jan
Journal:  Neuron       Date:  2011-11-17       Impact factor: 17.173

8.  Temporal and spatial patterns of Kv1.1 and Kv1.2 protein and gene expression in spinal cord white matter after acute and chronic spinal cord injury in rats: implications for axonal pathophysiology after neurotrauma.

Authors:  Soheila Karimi-Abdolrezaee; Eftekhar Eftekharpour; Michael G Fehlings
Journal:  Eur J Neurosci       Date:  2004-02       Impact factor: 3.386

Review 9.  Dendritic excitability and synaptic plasticity.

Authors:  P Jesper Sjöström; Ede A Rancz; Arnd Roth; Michael Häusser
Journal:  Physiol Rev       Date:  2008-04       Impact factor: 37.312

10.  A comparison of propagated action potentials from tropical and temperate squid axons: different durations and conduction velocities correlate with ionic conductance levels.

Authors:  Joshua J C Rosenthal; Francisco Bezanilla
Journal:  J Exp Biol       Date:  2002-06       Impact factor: 3.312

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  90 in total

1.  Hodgkin and Huxley and the basis for electrical signalling: a remarkable legacy still going strong.

Authors:  Jamie I Vandenberg; Stephen G Waxman
Journal:  J Physiol       Date:  2012-06-01       Impact factor: 5.182

2.  Ion channel degeneracy enables robust and tunable neuronal firing rates.

Authors:  Guillaume Drion; Timothy O'Leary; Eve Marder
Journal:  Proc Natl Acad Sci U S A       Date:  2015-09-09       Impact factor: 11.205

Review 3.  The chemical basis for electrical signaling.

Authors:  William A Catterall; Goragot Wisedchaisri; Ning Zheng
Journal:  Nat Chem Biol       Date:  2017-04-13       Impact factor: 15.040

Review 4.  Chansporter complexes in cell signaling.

Authors:  Geoffrey W Abbott
Journal:  FEBS Lett       Date:  2017-08-02       Impact factor: 4.124

5.  Loss of Function of KCNC1 is associated with intellectual disability without seizures.

Authors:  Karine Poirier; Géraldine Viot; Laura Lombardi; Clémence Jauny; Pierre Billuart; Thierry Bienvenu
Journal:  Eur J Hum Genet       Date:  2017-02-01       Impact factor: 4.246

6.  Making antisense of pain.

Authors:  Tina W Han; Lily Yeh Jan
Journal:  Nat Neurosci       Date:  2013-08       Impact factor: 24.884

7.  Up-regulation of Kv1.3 channels by janus kinase 2.

Authors:  Zohreh Hosseinzadeh; Jamshed Warsi; Bernat Elvira; Ahmad Almilaji; Ekaterina Shumilina; Florian Lang
Journal:  J Membr Biol       Date:  2015-02-03       Impact factor: 1.843

8.  Automated evolutionary optimization of ion channel conductances and kinetics in models of young and aged rhesus monkey pyramidal neurons.

Authors:  Timothy H Rumbell; Danel Draguljić; Aniruddha Yadav; Patrick R Hof; Jennifer I Luebke; Christina M Weaver
Journal:  J Comput Neurosci       Date:  2016-04-22       Impact factor: 1.621

9.  Potassium Channel Gain of Function in Epilepsy: An Unresolved Paradox.

Authors:  Zachary Niday; Anastasios V Tzingounis
Journal:  Neuroscientist       Date:  2018-03-15       Impact factor: 7.519

10.  Normal human CD4(+) helper T cells express Kv1.1 voltage-gated K(+) channels, and selective Kv1.1 block in T cells induces by itself robust TNFα production and secretion and activation of the NFκB non-canonical pathway.

Authors:  Barbara Fellerhoff-Losch; Sergiy V Korol; Yonatan Ganor; Songhai Gu; Itzik Cooper; Raya Eilam; Michal Besser; Meidan Goldfinger; Yehuda Chowers; Rudolf Wank; Bryndis Birnir; Mia Levite
Journal:  J Neural Transm (Vienna)       Date:  2015-11-26       Impact factor: 3.575

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