Glucose Deprivation Regulates K-ATP Channel Trafficking via, AMP-Activated Protein Kinase in Pancreatic beta-Cells

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dc.contributor.authorLim, Ajinko
dc.contributor.authorPark, Sun-Hyunko
dc.contributor.authorSohn, Jong Wooko
dc.contributor.authorJeon, Ju-Hongko
dc.contributor.authorPark, Jae-Hyungko
dc.contributor.authorSong, Dae-Kyuko
dc.contributor.authorLee, Suk-Hoko
dc.contributor.authorHo, Won-Kyungko
dc.date.accessioned2015-11-20T12:53:03Z-
dc.date.available2015-11-20T12:53:03Z-
dc.date.created2014-03-28-
dc.date.created2014-03-28-
dc.date.issued2009-12-
dc.identifier.citationDIABETES, v.58, no.12, pp.2813 - 2819-
dc.identifier.issn0012-1797-
dc.identifier.urihttp://hdl.handle.net/10203/201752-
dc.description.abstractOBJECTIVE-AMP-activated protein kinase (AMPK) and the ATP-sensitive K+ (K-ATP) channel are metabolic sensors that become activated during metabolic stress. AMPK is an important regulator of metabolism, whereas the K-ATP channel is a regulator of cellular excitability. Cross talk between these systems is poorly understood. RESEARCH DESIGN AND METHODS-Rat pancreatic beta-cells or INS-1 cells were pretreated for 2 h at various concentrations of glucose. Maximum K-ATP conductance (G(max)) was monitored by whole-cell measurements after intracellular ATP washout using ATP-free internal solutions. K-ATP channel activity (NPo) was monitored by inside-out patch recordings in the presence of diazoxide. Distributions of K-ATP channel proteins (Kir6.2 and SUR1) were examined using immunofluorescence imaging and surface biotinylation studies. Insulin secretion from rat pancreatic islets was measured using an enzyme immunoassay. RESULTS-G(max) and NPo in cells pretreated with glucose-free or 3 mmol/l glucose solutions were significantly higher than in cells pretreated in 11.1 mmol/l glucose solutions. Immunofluorescence imaging and biotinylation studies revealed that glucose deprivation induced an increase in the surface level of Kir6.2 without affecting the total cellular amount. Increases in G(max) and the surface level of Kir6.2 were inhibited by compound C, an AMPK inhibitor, and siAMPK transfection. The effects of glucose deprivation on K-ATP channels were mimicked by an AMPK activator. Glucose deprivation reduced insulin secretion, but this response was attenuated by compound C. CONCLUSIONS-K-ATP channel trafficking is regulated by energy status via AMPK, and this mechanism may play a key role in inhibiting insulin secretion under low energy status. Diabetes 58:281.3-2819, 2009-
dc.languageEnglish-
dc.publisherAMER DIABETES ASSOC-
dc.subjectSENSITIVE POTASSIUM CHANNELS-
dc.subjectSTIMULATED INSULIN-SECRETION-
dc.subjectNUCLEOTIDE SENSITIVITY-
dc.subjectSULFONYLUREA RECEPTOR-
dc.subjectTRANSLOCATION-
dc.subjectADP-
dc.subjectINHIBITION-
dc.subjectEXPRESSION-
dc.subjectDIAZOXIDE-
dc.subjectMECHANISM-
dc.titleGlucose Deprivation Regulates K-ATP Channel Trafficking via, AMP-Activated Protein Kinase in Pancreatic beta-Cells-
dc.typeArticle-
dc.identifier.wosid000272522000014-
dc.identifier.scopusid2-s2.0-73249149131-
dc.type.rimsART-
dc.citation.volume58-
dc.citation.issue12-
dc.citation.beginningpage2813-
dc.citation.endingpage2819-
dc.citation.publicationnameDIABETES-
dc.identifier.doi10.2337/db09-0600-
dc.contributor.localauthorSohn, Jong Woo-
dc.contributor.nonIdAuthorLim, Ajin-
dc.contributor.nonIdAuthorPark, Sun-Hyun-
dc.contributor.nonIdAuthorJeon, Ju-Hong-
dc.contributor.nonIdAuthorPark, Jae-Hyung-
dc.contributor.nonIdAuthorSong, Dae-Kyu-
dc.contributor.nonIdAuthorLee, Suk-Ho-
dc.contributor.nonIdAuthorHo, Won-Kyung-
dc.type.journalArticleArticle-
dc.subject.keywordPlusSENSITIVE POTASSIUM CHANNELS-
dc.subject.keywordPlusSTIMULATED INSULIN-SECRETION-
dc.subject.keywordPlusNUCLEOTIDE SENSITIVITY-
dc.subject.keywordPlusSULFONYLUREA RECEPTOR-
dc.subject.keywordPlusTRANSLOCATION-
dc.subject.keywordPlusADP-
dc.subject.keywordPlusINHIBITION-
dc.subject.keywordPlusEXPRESSION-
dc.subject.keywordPlusDIAZOXIDE-
dc.subject.keywordPlusMECHANISM-
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