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Adipose- and muscle-derived Wnts trigger pancreatic ß-cell adaptation to systemic insulin resistance.
Kozinski, Kamil; Jazurek, Magdalena; Dobrzyn, Pawel; Janikiewicz, Justyna; Kolczynska, Katarzyna; Gajda, Anna; Dobrzyn, Agnieszka.
Afiliação
  • Kozinski K; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Jazurek M; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Dobrzyn P; Laboratory of Medical Molecular Biochemistry, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Janikiewicz J; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Kolczynska K; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Gajda A; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
  • Dobrzyn A; Laboratory of Cell Signaling and Metabolic Disorders, Department of Biochemistry, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
Sci Rep ; 6: 31553, 2016 08 16.
Article em En | MEDLINE | ID: mdl-27527335
Wnt signaling molecules are associated with obesity, hyperlipidemia, and type 2 diabetes (T2D). Here, we show that two Wnt proteins, WNT3a and WNT4, are specifically secreted by skeletal muscle and adipose tissue during the development of insulin resistance and play an important role in cross-talk between insulin-resistant tissues and pancreatic beta cells. The activation of Frizzled receptor and Wnt signaling in pancreatic islets via circulating WNT3a in blood resulted in higher insulin secretion and an increase in beta cell proliferation, thus leading to islet adaptation in a pre-diabetic state. Interestingly, in fully developed T2D, the expression profiles of Wnt3a and Wnt4 in adipose tissue and muscle cells and blood plasma levels of these proteins were opposite to the pre-diabetic state, thus favoring the downregulation of Wnt signaling in beta cells and resulting in dysfunctional pancreatic islets. These results demonstrate that alterations in the secretion profile of a canonical Wnt activator (WNT3a) and inhibitor (WNT4) from insulin-resistant tissues during the development of T2D are responsible for triggering progression from a pre-diabetic to a diabetic state. We also show here that WNT3a and WNT4 are potent myokines, and their expression and secretion are regulated in response to nutritional and metabolic changes.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Tecido Adiposo / Ilhotas Pancreáticas / Músculo Esquelético / Proteína Wnt3A / Proteína Wnt4 Limite: Animals Idioma: En Revista: Sci Rep Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Polônia País de publicação: Reino Unido

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Tecido Adiposo / Ilhotas Pancreáticas / Músculo Esquelético / Proteína Wnt3A / Proteína Wnt4 Limite: Animals Idioma: En Revista: Sci Rep Ano de publicação: 2016 Tipo de documento: Article País de afiliação: Polônia País de publicação: Reino Unido