Literature DB >> 18305115

Identification of amino acid residues within the C terminus of the Glut4 glucose transporter that are essential for insulin-stimulated redistribution to the plasma membrane.

Xiao Mei Song1, Richard C Hresko, Mike Mueckler.   

Abstract

The Glut4 glucose transporter undergoes complex insulin-regulated subcellular trafficking in adipocytes. Much effort has been expended in an attempt to identify targeting motifs within Glut4 that direct its subcellular trafficking, but an amino acid motif responsible for the targeting of the transporter to insulin-responsive intracellular compartments in the basal state or that is directly responsible for its insulin-stimulated redistribution to the plasma membrane has not yet been delineated. In this study we define amino acid residues within the C-terminal cytoplasmic tail of Glut4 that are essential for its insulin-stimulated translocation to the plasma membrane. The residues were identified based on sequence similarity (LXXLXPDEXD) between cytoplasmic domains of Glut4 and the insulin-responsive aminopeptidase (IRAP). Alteration of this putative targeting motif (IRM, insulin-responsive motif) resulted in the targeting of the bulk of the mutant Glut4 molecules to dispersed membrane vesicles that lacked detectable levels of wild-type Glut4 in either the basal or insulin-stimulated states and completely abolished the insulin-stimulated translocation of the mutant Glut4 to the plasma membrane in 3T3L1 adipocytes. The bulk of the dispersed membrane vesicles containing the IRM mutant did not contain detectable levels of any subcellular marker tested. A fraction of the total IRM mutant was also detected in a wild-type Glut4/Syntaxin 6-containing perinuclear compartment. Interestingly, mutation of the IRM sequence did not appreciably alter the subcellular trafficking of IRAP. We conclude that residues within the IRM are critical for the targeting of Glut4, but not of IRAP, to insulin-responsive intracellular membrane compartments in 3T3-L1 adipocytes.

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Year:  2008        PMID: 18305115      PMCID: PMC2335344          DOI: 10.1074/jbc.M800838200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  47 in total

1.  A Leu-Leu sequence is essential for COOH-terminal targeting signal of GLUT4 glucose transporter in fibroblasts.

Authors:  K J Verhey; M J Birnbaum
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Authors:  R W Dudek; G L Dohm; G D Holman; S W Cushman; C M Wilson
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4.  The major protein of GLUT4-containing vesicles, gp160, has aminopeptidase activity.

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5.  Insulin unmasks a COOH-terminal Glut4 epitope and increases glucose transport across T-tubules in skeletal muscle.

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6.  Cloning and characterization of a novel insulin-regulated membrane aminopeptidase from Glut4 vesicles.

Authors:  S R Keller; H M Scott; C C Mastick; R Aebersold; G E Lienhard
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7.  A double leucine within the GLUT4 glucose transporter COOH-terminal domain functions as an endocytosis signal.

Authors:  S Corvera; A Chawla; R Chakrabarti; M Joly; J Buxton; M P Czech
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8.  Distinct signals in the GLUT4 glucose transporter for internalization and for targeting to an insulin-responsive compartment.

Authors:  K J Verhey; J I Yeh; M J Birnbaum
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Authors:  P M Haney; M A Levy; M S Strube; M Mueckler
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10.  Molecular regulation of GLUT-4 targeting in 3T3-L1 adipocytes.

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