2004
DOI: 10.1074/jbc.m312810200
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Sulfonylureas Correct Trafficking Defects of ATP-sensitive Potassium Channels Caused by Mutations in the Sulfonylurea Receptor

Abstract: The pancreatic ATP-sensitive potassium (K ATP ) channel, a complex of four sulfonylurea receptor 1 (SUR1) and four potassium channel Kir6.2 subunits, regulates insulin secretion by linking metabolic changes to ␤-cell membrane potential. Sulfonylureas inhibit K ATP channel activities by binding to SUR1 and are widely used to treat type II diabetes. We report here that sulfonylureas also function as chemical chaperones to rescue K ATP channel trafficking defects caused by two SUR1 mutations, A116P and V187D, ide… Show more

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Cited by 95 publications
(152 citation statements)
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“…Interestingly, we noted that CBZ treatment significantly enhanced the core-glycosylated A116P-and V187D-SUR1 RKR3 AAA band intensity even in the absence of Kir6.2. A likely explanation is that CBZ protects the misfolded SUR1 proteins against ER-associated degradation, which would be consistent with our previous metabolic pulse-chase study showing that GBC also slows down the degradation rate of A116P-SUR1 expressed alone without Kir6.2 (20).…”
Section: H]gbc Binding Competition Experiments-[supporting
confidence: 87%
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“…Interestingly, we noted that CBZ treatment significantly enhanced the core-glycosylated A116P-and V187D-SUR1 RKR3 AAA band intensity even in the absence of Kir6.2. A likely explanation is that CBZ protects the misfolded SUR1 proteins against ER-associated degradation, which would be consistent with our previous metabolic pulse-chase study showing that GBC also slows down the degradation rate of A116P-SUR1 expressed alone without Kir6.2 (20).…”
Section: H]gbc Binding Competition Experiments-[supporting
confidence: 87%
“…The FLAG tag has been shown to not interfere with channel biogenesis or function in prior studies (20,21,25). Point mutations of SUR1 were introduced into hamster SUR1 using the QuikChange site-directed mutagenesis kit (Stratagene) and confirmed by sequencing.…”
Section: Methodsmentioning
confidence: 99%
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“…The human disease familial hyperinsulinism, also called persistent hyperinsulinemic hypoglycemia of infancy (PHHI), is caused by loss-of-function mutations of K ATP channel subunits. Recent studies from Yan et al (23) demonstrated that the PHHI mutants SUR1 A116P and V187D did not traffic normally to the plasma membrane, but their trafficking defect could be partially overcome by sulfonylurea treatment, resulting in electrophysiologically normal channels. Sulfonylurea drugs are K ATP channel inhibitors used in the treatment of type II diabetes; however, in this case they presumably act as pharmacological chaperones that bind to SUR1 subunits to promote a conformation that favors subunit assembly and is recognized as being properly folded.…”
mentioning
confidence: 99%