ISK, a slowly activating voltage‐sensitive K+ channel Characterization of multiple cDNAs and gene organization in the mouse
- 20 April 1992
- journal article
- Published by Wiley in FEBS Letters
- Vol. 301 (2) , 168-172
- https://doi.org/10.1016/0014-5793(92)81240-m
Abstract
MISK is a protein consisting of 129 amino acids with a single putative transmembrane domain. The injection of mISK cRNA into Xenopus oocytes directs the expression of a voltage‐gated K+ current. A heart mRNA blot probed with mISK, DNA revealed at least two transcripts. The messenger diversity of mISK was investigated by cloning and characterization of multiple cDNAs of one genomic clone, and by performing primer extension experiments. All cDNAs characterized have the same protein‐coding sequence, and heterogeneity of the transcripts arises from alternative splicing, and multiple sites of transcription start and polyadenylation. ISK is encoded by a single gene in the mouse genome. The gene organization reveals the existence of an exon containing the whole protein‐coding sequence and of two alternative exons corresponding to the 5′ untranslated sequences. We failed to detect the presence of another exon capable of extending the protein‐coding sequence. The diversity of mISK messengers is not associated with a diversity of the mISK protein.Keywords
This publication has 17 references indexed in Scilit:
- Site-specific mutations in a minimal voltage-dependent K+ channel alter ion selectivity and open-channel blockNeuron, 1991
- Characterization of Gene Organization and Generation of Heterogeneous mRNA Species of Rat ISK Protein1The Journal of Biochemistry, 1990
- Estrogen induction of a small, putative K+ channel mRNA in rat uterusNeuron, 1990
- Homology and analogy in transmembrane channel design: lessons from synaptic membrane proteinsBiochemistry, 1990
- Cloning and expression of the delayed-rectifier IsK channel from neonatal rat heart and diethylstilbestrol-primed rat uterus.Proceedings of the National Academy of Sciences, 1990
- Immunohistochemical study of a rat membrane protein which induces a selective potassium permeation: Its localization in the apical membrane portion of epithelial cellsThe Journal of Membrane Biology, 1990
- Cloning of a Membrane Protein That Induces a Slow Voltage-Gated Potassium CurrentScience, 1988
- Existence of distinct sodium channel messenger RNAs in rat brainNature, 1986
- A catalogue of splice junction sequencesNucleic Acids Research, 1982
- DNA sequencing with chain-terminating inhibitorsProceedings of the National Academy of Sciences, 1977