3.9 Article

Nr4a1 Is Required for Fasting-Induced Down-Regulation of Pparγ2 in White Adipose Tissue

Journal

MOLECULAR ENDOCRINOLOGY
Volume 27, Issue 1, Pages 135-149

Publisher

ENDOCRINE SOC
DOI: 10.1210/me.2012-1248

Keywords

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Funding

  1. Austrian Research Council SFB Project [F30, 021]
  2. Austrian Ministry for Science and Research
  3. GEN-AU Projects GOLD-Genomics of Lipid-Associated Disorders
  4. Bioinformatics Integration Network
  5. Austrian Research Council [F30, FFG 820979 C3]
  6. Austrian Science Fund (FWF) [F 3009] Funding Source: researchfish

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Expression of the nuclear receptor gene, Nur77 (Nr4a1), is induced in white adipose tissue (WAT) in response to beta-adrenergic stimulation and fasting. Recently, Nur77 has been shown to play a gene regulatory role in the fasting response of several other major metabolic tissues. Here we investigated the effects of Nur77 on the WAT transcriptome after fasting. For this purpose, we performed gene expression profiling of WAT from wild-type and Nur77(-/-) mice submitted to prolonged fasting. Results revealed Nur77-dependent changes in expression profiles of 135 transcripts, many involved in insulin signaling, lipid and fatty acid metabolism, and glucose metabolism. Network analysis identified the deregulated genes Ppar gamma 2 and Nur77 as central hubs and closely connected in the network, indicating overlapping biological function. We further assayed the expression level of Ppar gamma 2 in a bigger cohort of fasted mice and found a significant Nur77-dependent down-regulation of Ppar gamma 2 in the wild-type mice (P = 0.021, n = 10). Consistently, the expression of several known Ppar gamma 2 targets, found among the Nur77-regulated genes (i.e. G0s2, Grp81, Fabp4, and Adipoq), were up-regulated in WAT of fasted Nur77(-/-) mice. Finally, we show with chromatin immunoprecipitation and luciferase assays that the Ppar gamma 2 promoter is a direct target of Nurr-related 77-kDa protein (Nur77)-dependent repressive regulation and that the N-terminal domain of Nur77 is required for this regulation. In conclusion, we present data implicating Nur77 as a mediator of fasting-induced Ppar gamma 2 regulation in WAT. (Molecular Endocrinology 27: 135-149, 2013)

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