Globular adiponectin increases GLUT4 translocation and glucose uptake but reduces glycogen synthesis in rat skeletal muscle cells Journal Article


Authors: Ceddia, R. B.; Somwar, R.; Maida, A.; Fang, X.; Bikopoulos, G.; Sweeney, G.
Article Title: Globular adiponectin increases GLUT4 translocation and glucose uptake but reduces glycogen synthesis in rat skeletal muscle cells
Abstract: Aims/hypothesis: The aim of this study was to determine whether adiponectin elicits glucose uptake via increased GLUT4 translocation and to investigate the metabolic fate of glucose in skeletal muscle cells treated with globular adiponectin. Materials and methods: Basal and insulin-stimulated 2-deoxy-D-[ 3H]glucose uptake, cell surface myc-tagged GLUT4 content, production of 14CO 2 by oxidation of D-[U- 14C]glucose and [1- 14C]oleate, and incorporation of D-[U- 14C]glucose into glycogen and lactate were measured in the presence and absence of globular adiponectin. Results: RT-PCR and Western blot analysis revealed that L6 cells and rat skeletal muscle cells express AdipoRl mRNA and protein. Globular adiponectin increased both GLUT4 translocation and glucose uptake by increasing the transport V max of glucose without altering the K m. Interestingly, the incorporation of D-[U- 14]glucose into glycogen under basal and insulin-stimulated conditions was significantly decreased by globular adiponectin, whereas lactate production was increased. Furthermore, globular adiponectin did not affect glucose oxidation, but enhanced phosphorylation of AMP kinase and acetyl-CoA carboxylase, and fatty acid oxidation. Conclusions/interpretation: The present study is the first to show that globular adiponectin increases glucose uptake in skeletal muscle cells via GLUT4 translocation and subsequently reduces the rate of glycogen synthesis and shifts glucose metabolism toward lactate production. These effects are consistent with the increased phosphorylation of AMP kinase and acetyl-CoA carboxylase and oxidation of fatty acids induced by globular adiponectin. © Springer-Verlag 2004.
Keywords: controlled study; protein expression; intercellular signaling peptides and proteins; nonhuman; protein localization; animal cell; animals; cells, cultured; reverse transcription polymerase chain reaction; gene expression; cell line; protein; enzyme phosphorylation; messenger rna; reverse transcriptase polymerase chain reaction; myc protein; rat; western blotting; protein transport; measurement; adenylate kinase; insulin; glucose; rats; adiponectin; fatty acid; glucose oxidation; glucose transport; oxidation; skeletal muscle; receptors, cell surface; carbon dioxide; tritium; muscle, skeletal; muscle cell; lactic acid; cell surface; stimulation; glucose metabolism; carbon 14; glucose transporter 4; oleic acid; fatty acid oxidation; glycogen; muscle proteins; deoxyglucose; lactate; glut4; acetyl-coa carboxylase; amp kinase; acetyl coenzyme a carboxylase; glycogen synthesis; glucose transporter type 4; lactates; monosaccharide transport proteins
Journal Title: Diabetologia
Volume: 48
Issue: 1
ISSN: 0012-186X
Publisher: Springer  
Date Published: 2005-01-01
Start Page: 132
End Page: 139
Language: English
DOI: 10.1007/s00125-004-1609-y
PUBMED: 15619075
PROVIDER: scopus
DOI/URL:
Notes: --- - "Cited By (since 1996): 103" - "Export Date: 24 October 2012" - "CODEN: DBTGA" - "Source: Scopus"
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  1. Romel Somwar
    110 Somwar