Literature DB >> 8858210

Cloning of human pancreatic islet large conductance Ca(2+)-activated K+ channel (hSlo) cDNAs: evidence for high levels of expression in pancreatic islets and identification of a flanking genetic marker.

J Ferrer1, J Wasson, L Salkoff, M A Permutt.   

Abstract

Insulin secretion from pancreatic beta cells is dependent on membrane potential changes that result from the concerted regulation of multiple ion channels. Among the distinct K+ channels known to be expressed in beta cells, large conductance Ca(2+)-activated K+ channels have been suggested to play an important role in stimulus-secretion coupling. In the course of a strategy to identify transcripts that are enriched in human pancreatic islet cells, we isolated a partial cDNA encoding a human large conductance Ca(2+)-activated K+ channel mRNA (hSlo). Northern analysis of mRNA showed that among a panel of human tissues hSlo is expressed at its highest levels in pancreatic islets. Screening of human insulinoma and islet cDNA libraries with the partial cDNA resulted in the isolation of 19 hSlo cDNAs. These comprised three splice variants: one shared the common underlying structure of previously reported Slo cDNAs, another variant encoded a novel 60-amino acid insertion in the putative Ca(2+)-sensing domain of hSlo, while the third group of clones had an alternate exon encoding eight amino acids in the predicted COOH-terminal end. Analysis of somatic-cell hybrids containing different portions of chromosome 10 indicated that hSlo maps to chromosome 10q22.2-q23.1. Furthermore, high resolution localization was obtained by analysis of genome-wide radiation hybrids and the CEPH "B" mega-YAC library, both of which identified for the first time a highly polymorphic genetic marker (D10S195) linked to hSlo. These studies provide tools with which to explore the physiological role of Ca(2+)-activated K+ channel proteins in pancreatic islets, and also to investigate the contribution of this locus to the inherited susceptibility to non-insulin-dependent diabetes mellitus.

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Year:  1996        PMID: 8858210     DOI: 10.1007/bf00403907

Source DB:  PubMed          Journal:  Diabetologia        ISSN: 0012-186X            Impact factor:   10.122


  34 in total

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Journal:  Hum Genet       Date:  1991-05       Impact factor: 4.132

3.  Charybdotoxin-sensitive K(Ca) channel is not involved in glucose-induced electrical activity in pancreatic beta-cells.

Authors:  M Kukuljan; A A Goncalves; I Atwater
Journal:  J Membr Biol       Date:  1991-01       Impact factor: 1.843

4.  ATP-sensitive K+ channels in pancreatic beta-cells. Spare-channel hypothesis.

Authors:  D L Cook; L S Satin; M L Ashford; C N Hales
Journal:  Diabetes       Date:  1988-05       Impact factor: 9.461

5.  Inositol trisphosphate-dependent periodic activation of a Ca(2+)-activated K+ conductance in glucose-stimulated pancreatic beta-cells.

Authors:  C Ammälä; O Larsson; P O Berggren; K Bokvist; L Juntti-Berggren; H Kindmark; P Rorsman
Journal:  Nature       Date:  1991-10-31       Impact factor: 49.962

6.  Delayed rectifier K+ channel overexpression in transgenic islets and beta-cells associated with impaired glucose responsiveness.

Authors:  L H Philipson; M P Rosenberg; A Kuznetsov; M E Lancaster; J F Worley; M W Roe; I D Dukes
Journal:  J Biol Chem       Date:  1994-11-11       Impact factor: 5.157

7.  Human repeat element-mediated PCR: cloning and mapping of chromosome 10 DNA markers.

Authors:  A R Brooks-Wilson; D E Smailus; H U Weier; P J Goodfellow
Journal:  Genomics       Date:  1992-06       Impact factor: 5.736

8.  Muscarinic inhibition of single KCa channels in smooth muscle cells by a pertussis-sensitive G protein.

Authors:  H Kume; M I Kotlikoff
Journal:  Am J Physiol       Date:  1991-12

9.  Sequence and functional expression in Xenopus oocytes of a human insulinoma and islet potassium channel.

Authors:  L H Philipson; R E Hice; K Schaefer; J LaMendola; G I Bell; D J Nelson; D F Steiner
Journal:  Proc Natl Acad Sci U S A       Date:  1991-01-01       Impact factor: 11.205

10.  Cloning and characterization of human and mouse homologs of the Drosophila calcium-activated potassium channel gene, slowpoke.

Authors:  L Pallanck; B Ganetzky
Journal:  Hum Mol Genet       Date:  1994-08       Impact factor: 6.150

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  14 in total

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Review 2.  Control of alternative pre-mRNA splicing by Ca(++) signals.

Authors:  Jiuyong Xie
Journal:  Biochim Biophys Acta       Date:  2008-01-17

3.  Expression and function of calcium-activated potassium channels in human glioma cells.

Authors:  Amy K Weaver; Valerie C Bomben; Harald Sontheimer
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4.  Inactivating BK channels in rat chromaffin cells may arise from heteromultimeric assembly of distinct inactivation-competent and noninactivating subunits.

Authors:  J P Ding; Z W Li; C J Lingle
Journal:  Biophys J       Date:  1998-01       Impact factor: 4.033

Review 5.  The BK channel: a vital link between cellular calcium and electrical signaling.

Authors:  Brad S Rothberg
Journal:  Protein Cell       Date:  2012-09-21       Impact factor: 14.870

6.  Palmitoylation and membrane association of the stress axis regulated insert (STREX) controls BK channel regulation by protein kinase C.

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7.  Alternative splicing determines sensitivity of murine calcium-activated potassium channels to glucocorticoids.

Authors:  L Tian; M S Hammond; H Florance; F A Antoni; M J Shipston
Journal:  J Physiol       Date:  2001-11-15       Impact factor: 5.182

8.  Cloning and characterization of glioma BK, a novel BK channel isoform highly expressed in human glioma cells.

Authors:  Xiaojin Liu; Yongchang Chang; Peter H Reinhart; Harald Sontheimer; Yongchan Chang
Journal:  J Neurosci       Date:  2002-03-01       Impact factor: 6.167

9.  Relative contribution of chloride channels and transporters to regulatory volume decrease in human glioma cells.

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10.  Enhanced glucose tolerance by SK4 channel inhibition in pancreatic beta-cells.

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