Literature DB >> 16642023

Ablation of PDK1 in pancreatic beta cells induces diabetes as a result of loss of beta cell mass.

Naoko Hashimoto1, Yoshiaki Kido, Tohru Uchida, Shun-ichiro Asahara, Yutaka Shigeyama, Tomokazu Matsuda, Akihiko Takeda, Daisuke Tsuchihashi, Akihiko Nishizawa, Wataru Ogawa, Yoshito Fujimoto, Hitoshi Okamura, Karen C Arden, Pedro L Herrera, Tetsuo Noda, Masato Kasuga.   

Abstract

The total mass of islets of Langerhans is reduced in individuals with type 2 diabetes, possibly contributing to the pathogenesis of this condition. Although the regulation of islet mass is complex, recent studies have suggested the importance of a signaling pathway that includes the insulin or insulin-like growth factor-1 receptors, insulin receptor substrate and phosphatidylinositol (PI) 3-kinase. 3-Phosphoinositide-dependent protein kinase 1 (PDK1) is a serine-threonine kinase that mediates signaling downstream of PI 3-kinase. Here we show that mice that lack PDK1 specifically in pancreatic beta cells (betaPdk1-/- mice) develop progressive hyperglycemia as a result of a loss of islet mass. The mice show reductions in islet density as well as in the number and size of cells. Haploinsufficiency of the gene for the transcription factor Foxo1 resulted in a marked increase in the number, but not the size, of cells and resulted in the restoration of glucose homeostasis in betaPdk1-/- mice. These results suggest that PDK1 is important in maintenance of pancreatic cell mass and glucose homeostasis.

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Year:  2006        PMID: 16642023     DOI: 10.1038/ng1774

Source DB:  PubMed          Journal:  Nat Genet        ISSN: 1061-4036            Impact factor:   38.330


  96 in total

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2.  T regulatory cells maintain intestinal homeostasis by suppressing γδ T cells.

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4.  Glucokinase and IRS-2 are required for compensatory beta cell hyperplasia in response to high-fat diet-induced insulin resistance.

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Review 5.  The Continuing Evolution of Precision Health in Type 2 Diabetes: Achievements and Challenges.

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Review 7.  Minireview: Meeting the demand for insulin: molecular mechanisms of adaptive postnatal beta-cell mass expansion.

Authors:  Mira M Sachdeva; Doris A Stoffers
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8.  Modulation of hypovitaminosis D-induced islet dysfunction and insulin resistance through direct suppression of the pancreatic islet renin-angiotensin system in mice.

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Review 9.  Understanding Genetic Heterogeneity in Type 2 Diabetes by Delineating Physiological Phenotypes: SIRT1 and its Gene Network in Impaired Insulin Secretion.

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10.  Cell type specificity of PI3K signaling in Pdk1- and Pten-deficient brains.

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Journal:  Genes Dev       Date:  2009-07-15       Impact factor: 11.361

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