Literature DB >> 17204559

Glucotoxicity inhibits late steps of insulin exocytosis.

Mathilde Dubois1, Pierre Vacher, Benoît Roger, Deborah Huyghe, Brigitte Vandewalle, Julie Kerr-Conte, François Pattou, Naima Moustaïd-Moussa, Jochen Lang.   

Abstract

Prolonged exposure of beta-cells to high glucose (glucotoxicity) diminishes insulin secretion in response to glucose and has been linked to altered generation of metabolism-secretion coupling factors. We have investigated whether glucotoxicity may also alter calcium handling and late steps in secretion such as exocytosis. Clonal INS-1E beta-cells cultured at high glucose (20 or 30 mM vs. 5.5 mM) for 72 h exhibited elevated basal intracellular calcium ([Ca2+]i), which was KATP-channel dependent and due to long-term activation of protein kinase A. An increased amplitude and shortened duration of depolarization-evoked rises in [Ca2+]i were apparent. These changes were probably linked to the observed increased filling of intracellular stores and to short-term activation of protein kinase A. Insulin secretion was reduced not only by acute stimulation with either glucose or KCl but more importantly by direct calcium stimulation of permeabilized cells. These findings indicate a defect in the final steps of exocytosis. To confirm this, we measured expression levels of some 30 proteins implicated in trafficking/exocytosis of post-Golgi vesicles. Several proteins required for calcium-induced exocytosis of secretory granules were down-regulated, such as the soluble N-ethylmaleimide-sensitive factor-sensitive factor attachment receptor (SNARE) proteins VAMP-2 [vesicle (v)-SNARE, vesicle-associated membrane protein 2] and syntaxin 1 as well as complexin. VAMP-2 was also reduced in human islets. In contrast, cell immunostaining and expression levels of several fluorescent proteins suggested that other post-trans-Golgi trafficking steps and compartments are preserved and that cells were not degranulated. Thus, these studies indicate that, in addition to known metabolic changes, glucotoxicity impedes generation of signals for secretion and diminishes the efficiency of late steps in exocytosis.

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Year:  2007        PMID: 17204559     DOI: 10.1210/en.2006-1022

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  24 in total

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2.  PRMT1 promotes glucose toxicity-induced β cell dysfunction by regulating the nucleo-cytoplasmic trafficking of PDX-1 in a FOXO1-dependent manner in INS-1 cells.

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Review 3.  Glucolipotoxicity: fuel excess and beta-cell dysfunction.

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Journal:  Endocr Rev       Date:  2007-11-29       Impact factor: 19.871

4.  Adenylyl cyclase 8 is central to glucagon-like peptide 1 signalling and effects of chronically elevated glucose in rat and human pancreatic beta cells.

Authors:  B Roger; J Papin; P Vacher; M Raoux; A Mulot; M Dubois; J Kerr-Conte; B H Voy; F Pattou; G Charpentier; J-C Jonas; N Moustaïd-Moussa; J Lang
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5.  Quantitative proteomic analysis of single pancreatic islets.

Authors:  Leonie F Waanders; Karolina Chwalek; Mara Monetti; Chanchal Kumar; Eckhard Lammert; Matthias Mann
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6.  Complexin facilitates exocytosis and synchronizes vesicle release in two secretory model systems.

Authors:  Ming-Yi Lin; Joyce G Rohan; Haijiang Cai; Kerstin Reim; Chien-Ping Ko; Robert H Chow
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7.  Anthocyanins-rich extract of wild Chinese blueberry protects glucolipotoxicity-induced INS832/13 β-cell against dysfunction and death.

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8.  Energy depletion and not ROS formation is a crucial step of glucolipotoxicity (GLTx) in pancreatic beta cells.

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9.  Glycation isotopic labeling with 13C-reducing sugars for quantitative analysis of glycated proteins in human plasma.

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10.  Bottom-up proteomics analysis of the secretome of murine islets of Langerhans in elevated glucose levels.

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