3.9 Article

Dysregulation of Dicer1 in Beta Cells Impairs Islet Architecture and Glucose Metabolism

Journal

EXPERIMENTAL DIABETES RESEARCH
Volume -, Issue -, Pages -

Publisher

HINDAWI PUBLISHING CORPORATION
DOI: 10.1155/2012/470302

Keywords

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Funding

  1. Juvenile Diabetes Research Foundation [99-2007-71, 47-2012-742]
  2. EFSD/D-Cure young Investigator award, EFSD-Lilly
  3. Israel Science Foundation
  4. Wolfson family charitable trust

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microRNAs (miRNAs) play important roles in pancreas development and in regulation of insulin expression in the adult. Here we show that loss of miRNAs activity in beta-cells during embryonic development results in lower beta-cell mass and in impaired glucose tolerance. Dicer1-null cells initially constitute a significant portion of the total beta-cell population. However, during postnatal development, Dicer1-null cells are depleted. Furthermore, wild-type beta cells are repopulating the islets in complex compensatory dynamics. Because loss of Dicer1 is also associated with changes in the distribution of membranous E-cadherin, we hypothesized that E-cadherin activity may play a role in beta cell survival or islet architecture. However, genetic loss of E-cadherin function does not impair islet architecture, suggesting that miRNAs likely function through other or redundant effectors in the endocrine pancreas.

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