MicroRNAs regulated by adiponectin as novel targets for controlling adipose tissue inflammation

Qian Ge1, Justine Gérard, Laurence Noël

  • 1Endocrinology, Diabetes, and Nutrition Unit, Institute of Experimental and Clinical Research, Medical Sector, University of Louvain, Brussels, Belgium.

Endocrinology
|September 28, 2012
PubMed

Insights

Adiponectin (ApN) uses microRNAs (miRNAs) to reduce inflammation in adipose tissue (AT). miR883b-5p, a key miRNA, suppresses inflammatory pathways, offering potential new treatments for metabolic syndrome (MS).

Area of Science:

  • Molecular Biology
  • Endocrinology
  • Metabolic Syndrome Research

Background:

  • Metabolic syndrome (MS) is linked to low-grade inflammation.
  • Adiponectin (ApN), a key hormone reduced in MS, regulates inflammation and immunity.
  • The role of microRNAs (miRNAs) in mediating ApN's anti-inflammatory effects in adipose tissue (AT) is unclear.

Purpose of the Study:

  • To identify miRNAs that mediate the anti-inflammatory action of ApN in AT.
  • To investigate the function of specific miRNAs, particularly miR883b-5p, in regulating inflammatory pathways within AT.

Main Methods:

  • Performed miRNA expression profiling in mice overexpressing ApN in AT.
  • Utilized gain- and loss-of-function approaches in adipocytes and transplanted AT models.
  • Compared miRNA expression in omental AT from lean and obese human subjects.

Main Results:

  • ApN overexpression in AT altered the expression of several miRNAs, including up-regulation of miR883b-5p.
  • miR883b-5p overexpression suppressed lipopolysaccharide-binding protein (LBP) and inflammatory responses in adipocytes and AT.
  • miR883b-5p expression was down-regulated in the AT of obese subjects, and its blockade abolished ApN's protective effects.

Conclusions:

  • miR883b-5p is a novel, ApN-regulated miRNA that acts as a major mediator of anti-inflammatory effects in AT by repressing LBP and Toll-like receptor-4 signaling.
  • These findings highlight specific miRNAs as key players in ApN's action and suggest potential therapeutic targets for MS.