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MiR-184 regulates pancreatic β-cell function according to glucose metabolism.

Tattikota, Sudhir G (author)
Rathjen, Thomas (author)
Hausser, Jean (author)
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Khedkar, Aditya (author)
Kabra, Uma D (author)
Pandey, Varun K (author)
Sury, Matthias (author)
Wessels, Hans-Hermann (author)
Mollet, Ines (author)
Lund University,Lunds universitet,Diabetes - öcellsexocytos,Forskargrupper vid Lunds universitet,Diabetes - Islet Cell Exocytosis,Lund University Research Groups
Eliasson, Lena (author)
Lund University,Lunds universitet,Diabetes - öcellsexocytos,Forskargrupper vid Lunds universitet,Diabetes - Islet Cell Exocytosis,Lund University Research Groups
Selbach, Matthias (author)
Zinzen, Robert P (author)
Zavolan, Mihaela (author)
Kadener, Sebastian (author)
Tschöp, Matthias (author)
Jastroch, Martin (author)
Friedländer, Marc R (author)
Poy, Matthew N (author)
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 (creator_code:org_t)
2015
2015
English.
In: Journal of Biological Chemistry. - 1083-351X. ; 290:33, s. 20284-20294
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • In response to fasting or hyperglycemia, the pancreatic β-cell alters its output of secreted insulin; however the pathways governing this adaptive response are not entirely established. While the precise role of microRNAs (miRNAs) is also unclear, a recurring theme emphasizes their function in cellular stress responses. We recently showed that miR-184, an abundant miRNA in the β-cell, regulates compensatory proliferation and secretion during insulin resistance. Consistent with previous studies showing miR-184 suppresses insulin release, expression of this miRNA was increased in islets after fasting, demonstrating an active role in the β-cell as glucose levels lower and the insulin demand ceases. Additionally, miR-184 was negatively regulated upon administration of a sucrose-rich diet in Drosophila demonstrating strong conservation of this pathway through evolution. Furthermore, miR-184 and its target Argonaute2 (Ago2) remained inversely correlated as concentrations of extracellular glucose increased, underlining a functional relationship between this miRNA and its targets. Lastly, restoration of Ago2 in the presence of miR-184 rescued suppression of miR-375-targeted genes suggesting these genes act in a coordinated manner during changes in the metabolic context. Together, these results highlight the adaptive role of miR-184 according to glucose metabolism and suggest the regulatory role of this miRNA in energy homeostasis is highly conserved.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Endokrinologi och diabetes (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Endocrinology and Diabetes (hsv//eng)

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