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miR-125b affects mitochondrial biogenesis and impairs brite adipocyte formation and function.

Authors :
Giroud M
Pisani DF
Karbiener M
Barquissau V
Ghandour RA
Tews D
Fischer-Posovszky P
Chambard JC
Knippschild U
Niemi T
Taittonen M
Nuutila P
Wabitsch M
Herzig S
Virtanen KA
Langin D
Scheideler M
Amri EZ
Source :
Molecular metabolism [Mol Metab] 2016 Jun 15; Vol. 5 (8), pp. 615-625. Date of Electronic Publication: 2016 Jun 15 (Print Publication: 2016).
Publication Year :
2016

Abstract

Objective: In rodents and humans, besides brown adipose tissue (BAT), islands of thermogenic adipocytes, termed "brite" (brown-in-white) or beige adipocytes, emerge within white adipose tissue (WAT) after cold exposure or β3-adrenoceptor stimulation, which may protect from obesity and associated diseases. microRNAs are novel modulators of adipose tissue development and function. The purpose of this work was to characterize the role of microRNAs in the control of brite adipocyte formation.<br />Methods/results: Using human multipotent adipose derived stem cells, we identified miR-125b-5p as downregulated upon brite adipocyte formation. In humans and rodents, miR-125b-5p expression was lower in BAT than in WAT. In vitro, overexpression and knockdown of miR-125b-5p decreased and increased mitochondrial biogenesis, respectively. In vivo, miR-125b-5p levels were downregulated in subcutaneous WAT and interscapular BAT upon β3-adrenergic receptor stimulation. Injections of an miR-125b-5p mimic and LNA inhibitor directly into WAT inhibited and increased β3-adrenoceptor-mediated induction of UCP1, respectively, and mitochondrial brite adipocyte marker expression and mitochondriogenesis.<br />Conclusion: Collectively, our results demonstrate that miR-125b-5p plays an important role in the repression of brite adipocyte function by modulating oxygen consumption and mitochondrial gene expression.

Details

Language :
English
ISSN :
2212-8778
Volume :
5
Issue :
8
Database :
MEDLINE
Journal :
Molecular metabolism
Publication Type :
Academic Journal
Accession number :
27656399
Full Text :
https://doi.org/10.1016/j.molmet.2016.06.005