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Role of transcription factor KLF11 and its diabetes-associated gene variants in pancreatic beta cell function

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Role of transcription factor KLF11 and its diabetes-associated gene variants in pancreatic beta cell function
Id. 5041533
Idioma inglés
Titulo Role of transcription factor KLF11 and its diabetes-associated gene variants in pancreatic beta cell function
Autor(es) Neve, Bernadette
Fernandez-Zapico, Martin E.
Ashkenazi-Katalan, Vered
Dina, Christian
Hamid, Yasmin H.
Joly, Erik
Vaillant, Emmanuel
Benmezroua, Yamina
Durand, Emmanuelle
Bakaher, Nicolas
Delannoy, Valerie
Vaxillaire, Martine
Cook, Tiffany
Dallinga-Thie, Geesje M.
Jansen, Hans
Charles, Marie-Aline
Clément, Karine
Galan, Pilar
Hercberg, Serge
Helbecque, Nicole
Charpentier, Guillaume
Prentki, Marc
Hansen, Torben
Pedersen, Oluf
Urrutia, Raul
Melloul, Danielle
Froguel, Philippe
Localización http://www.pubmedcentral.gov/articlerender.fcgi?artid=554843
Versión 1.0
Estado Final
Descripción KLF11 (TIEG2) is a pancreas-enriched transcription factor that has elicited significant attention because of its role as negative regulator of exocrine cell growth in vitro and in vivo. However, its functional role in the endocrine pancreas remains to be established. Here, we report, for the first time, to our knowledge, the characterization of KLF11 as a glucose-inducible regulator of the insulin gene. A combination of random oligonucleotide binding, EMSA, luciferase reporter, and chromatin immunoprecipitation assays shows that KLF11 binds to the insulin promoter and regulates its activity in beta cells. Genetic analysis of the KLF11 gene revealed two rare variants (Ala347Ser and Thr220Met) that segregate with diabetes in families with early-onset type 2 diabetes, and significantly impair its transcriptional activity. In addition, analysis of 1,696 type 2 diabetes mellitus and 1,776 normoglycemic subjects show a frequent polymorphic Gln62Arg variant that significantly associates with type 2 diabetes mellitus in North European populations (OR = 1.29, P = 0.00033). Moreover, this variant alters the corepressor mSin3A-binding activity of KLF11, impairs the activation of the insulin promoter and shows lower levels of insulin expression in pancreatic beta cells. In addition, subjects carrying the Gln62Arg allele show decreased plasma insulin after an oral glucose challenge. Interestingly, all three nonsynonymous KLF11 variants show increased repression of the catalase 1 promoter, suggesting a role in free radical clearance that may render beta cells more sensitive to oxidative stress. Thus, both functional and genetic analyses reveal that KLF11 plays a role in the regulation of pancreatic beta cell physiology, and its variants may contribute to the development of diabetes.
Palabras clave Biological Sciences
Tipo de recurso Text
Tipo de Interactividad Expositivo
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Audiencia Estudiante
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Estructura Atomic
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Copyright © 2005, The National Academy of Sciences
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Fecha de contribución 24-nov-2006
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