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Islet Studies

Stress-Induced MicroRNA-708 Impairs β-Cell Function and Growth

  1. Júlia Rodríguez-Comas1,
  2. Alba Moreno-Asso1,2,
  3. Juan Moreno-Vedia1,
  4. Mercè Martín1,
  5. Carlos Castaño1,2,
  6. Anna Marzà-Florensa1,
  7. Xavier Bofill-De Ros3,4,
  8. Joan Mir-Coll1,5,
  9. Joel Montané1,2,
  10. Cristina Fillat3,4,
  11. Rosa Gasa1,2,
  12. Anna Novials1,2⇑ and
  13. Joan-Marc Servitja1,2⇑
  1. 1Diabetes and Obesity Research Laboratory, Institut d’Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain
  2. 2Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas (CIBERDEM), Barcelona, Spain
  3. 3Gene Therapy and Cancer Laboratory, Institut d’Investigacions Biomèdiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain
  4. 4Centro de Investigación Biomédica en Red de Enfermedades Raras (CIBERER), Barcelona, Spain
  5. 5Department of Medicine, University of Barcelona, Barcelona, Spain
  1. Corresponding authors: Anna Novials, anovials{at}clinic.cat, or
  2. Joan-Marc Servitja, servitja{at}clinic.cat.
  1. J.R.-C. and A.M.-A. contributed equally to this study.

Diabetes 2017 Dec; 66(12): 3029-3040. https://doi.org/10.2337/db16-1569
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Abstract

The pancreatic β-cell transcriptome is highly sensitive to external signals such as glucose oscillations and stress cues. MicroRNAs (miRNAs) have emerged as key factors in gene expression regulation. Here, we aimed to identify miRNAs that are modulated by glucose in mouse pancreatic islets. We identified miR-708 as the most upregulated miRNA in islets cultured at low glucose concentrations, a setting that triggers a strong stress response. miR-708 was also potently upregulated by triggering endoplasmic reticulum (ER) stress with thapsigargin and in islets of ob/ob mice. Low-glucose induction of miR-708 was blocked by treatment with the chemical chaperone 4-phenylbutyrate, uncovering the involvement of ER stress in this response. An integrative analysis identified neuronatin (Nnat) as a potential glucose-regulated target of miR-708. Indeed, Nnat expression was inversely correlated with miR-708 in islets cultured at different glucose concentrations and in ob/ob mouse islets and was reduced after miR-708 overexpression. Consistent with the role of Nnat in the secretory function of β-cells, miR-708 overexpression impaired glucose-stimulated insulin secretion (GSIS), which was recovered by NNAT overexpression. Moreover, miR-708 inhibition recovered GSIS in islets cultured at low glucose. Finally, miR-708 overexpression suppressed β-cell proliferation and induced β-cell apoptosis. Collectively, our results provide a novel mechanism of glucose regulation of β-cell function and growth by repressing stress-induced miR-708.

Footnotes

  • This article contains Supplementary Data online at http://diabetes.diabetesjournals.org/lookup/suppl/doi:10.2337/db16-1569/-/DC1.

  • Received December 19, 2016.
  • Accepted September 24, 2017.
  • © 2017 by the American Diabetes Association.
http://www.diabetesjournals.org/content/license

Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at http://www.diabetesjournals.org/content/license.

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Stress-Induced MicroRNA-708 Impairs β-Cell Function and Growth
Júlia Rodríguez-Comas, Alba Moreno-Asso, Juan Moreno-Vedia, Mercè Martín, Carlos Castaño, Anna Marzà-Florensa, Xavier Bofill-De Ros, Joan Mir-Coll, Joel Montané, Cristina Fillat, Rosa Gasa, Anna Novials, Joan-Marc Servitja
Diabetes Dec 2017, 66 (12) 3029-3040; DOI: 10.2337/db16-1569

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Stress-Induced MicroRNA-708 Impairs β-Cell Function and Growth
Júlia Rodríguez-Comas, Alba Moreno-Asso, Juan Moreno-Vedia, Mercè Martín, Carlos Castaño, Anna Marzà-Florensa, Xavier Bofill-De Ros, Joan Mir-Coll, Joel Montané, Cristina Fillat, Rosa Gasa, Anna Novials, Joan-Marc Servitja
Diabetes Dec 2017, 66 (12) 3029-3040; DOI: 10.2337/db16-1569
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