Scinovex
reviewTop 1% cited

Molecular Diversity of K<sup>+</sup> Channels

Annals of the New York Academy of Sciences · 1999 · Vol. 868(1) · pp. 233–255
William A. CoetzeeYimy AmarilloJoanna C. ChiuAlan ChowDavid LauTom McCormackHERMAN MORENAMarcela S. NadalAndrés OzaitaDavid PountneyMichael J. SaganichEleazar Vega‐Saenz de MieraBernardo Rudy

Abstract

K+ channel principal subunits are by far the largest and most diverse of the ion channels. This diversity originates partly from the large number of genes coding for K+ channel principal subunits, but also from other processes such as alternative splicing, generating multiple mRNA transcripts from a single gene, heteromeric assembly of different principal subunits, as well as possible RNA editing and posttranslational modifications. In this chapter, we attempt to give an overview (mostly in tabular format) of the different genes coding for K+ channel principal and accessory subunits and their genealogical relationships. We discuss the possible correlation of different principal subunits with native K+ channels, the biophysical and pharmacological properties of channels formed when principal subunits are expressed in heterologous expression systems, and their patterns of tissue expression. In addition, we devote a section to describing how diversity of K+ channels can be conferred by heteromultimer formation, accessory subunits, alternative splicing, RNA editing and posttranslational modifications. We trust that this collection of facts will be of use to those attempting to compare the properties of new subunits to the properties of others already known or to those interested in a comparison between native channels and cloned candidates.

Ion channel regulation and functionCardiac electrophysiology and arrhythmiasRNA and protein synthesis mechanismsAlternative splicingRNA splicingPrincipal (computer security)Computational biologyProtein subunitCoding regionGeneRNAChannel (broadcasting)Biology

MeSH terms

AnimalsCloning, MolecularGene Expression RegulationHumansPhylogenyProtein ConformationProtein Processing, Post-TranslationalRNA, MessengerXenopusPotassium ChannelsIon Channel GatingRNA EditingAlternative Splicing
Citations
1,106
FWCI
18.79
field-weighted impact
References
146
Percentile
100%
vs. same field & year
Citations per year
Cited by
Molecular and functional properties of two-pore-domain potassium channels
American Journal of Physiology-Renal Physiology · 2000 · 618 citations
The action potential in mammalian central neurons
Nature reviews. Neuroscience · 2007 · 1,767 citations
References
Calcium-activated potassium channels
Current Opinion in Neurobiology · 1998 · 945 citations
Octameric Stoichiometry of the KATP Channel Complex
The Journal of General Physiology · 1997 · 503 citations
Diversity and ubiquity of K channels
Neuroscience · 1988 · 1,327 citations
Mutations in the K+ channel signature sequence
Biophysical Journal · 1994 · 833 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Molecular Diversity of K<sup>+</sup> Channels · Scinovex