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Upregulation of non-canonical Wnt ligands and oxidative glucose metabolism in NASH induced by methionine-choline deficient diet.
Zhu, Lixin; Baker, Susan S; Shahein, Abdul; Choudhury, Shelly; Liu, Wensheng; Bhatia, Tavleen; Baker, Robert D; Lee, Techung.
Afiliación
  • Zhu L; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Baker SS; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Shahein A; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Choudhury S; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Liu W; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Bhatia T; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Baker RD; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
  • Lee T; Department of Biochemistry and Department of Pediatrics, University at Buffalo, 955 Main Street, Buffalo, NY 14203.
Trends Cell Mol Biol ; 13: 47-56, 2018.
Article en En | MEDLINE | ID: mdl-30853754
ABSTRACT
Wnt ligands regulate metabolic pathways, and dysregulation of Wnt signaling contributes to chronic inflammatory disease. A knowledge gap exists concerning the role of aberrant Wnt signaling in non-alcoholic steatohepatitis (NASH), which exhibits metabolic syndrome and inflammation. Using a mouse model of methionine-choline deficient diet (MCDD)-induced NASH, we investigated the Wnt signaling pathways in relation to hepatic glucose oxidation. Mice fed the MCD diet for 6 weeks developed prominent NASH marked by macrovesicular steatosis, inflammation and lipid peroxidation. qPCR analysis reveals differential hepatic expression of canonical and non-canonical Wnt ligands. While expression of Wnt3a was decreased in NASH vs chow diet control, expression of Wnt5a and Wnt11 were increased 3 fold and 15 fold, respectively. Consistent with activation of non-canonical Wnt signaling, expression of the alternative Wnt receptor ROR2 was increased 5 fold with no change in LRP6 expression. Activities of the metabolic enzymes glucokinase, phosphoglucoisomerase, glyceraldehyde-3-phosphate dehydrogenase, pyruvate kinase, and pyruvate dehydrogenase were all elevated by MCDD. NASH-driven glucose oxidation was accompanied by a 6-fold increase in lactate dehydrogenase (LDH)-B with no change in LDH-A. In addition, glucose-6-phosphate dehydrogenase, the regulatory and NADPH-producing enzyme of the pentose phosphate pathway, was elevated in NASH. These data support a role of accelerated glucose oxidation in the development of NASH, which may be driven by non-canonical Wnt signaling.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Trends Cell Mol Biol Año: 2018 Tipo del documento: Article Pais de publicación: IN / INDIA / ÍNDIA

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Trends Cell Mol Biol Año: 2018 Tipo del documento: Article Pais de publicación: IN / INDIA / ÍNDIA