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PPARγ phase separates with RXRα at PPREs to regulate target gene expression

  • Zhean Li
  • , Lingling Luo
  • , Wenxia Yu
  • , Ping Li
  • , Danfeng Ou
  • , Jia Liu
  • , Hanhui Ma
  • , Qinhu Sun
  • , Aibin Liang
  • , Cheng Huang
  • , Tian Chi
  • , Xingxu Huang
  • , Yu Zhang

Research output: Contribution to journalArticlepeer-review

47 Scopus citations

Abstract

Peroxisome proliferator-activated receptor (PPAR)-γ is a key transcription activator controlling adipogenesis and lipid metabolism. PPARγ binds PPAR response elements (PPREs) as the obligate heterodimer with retinoid X receptor (RXR) α, but exactly how PPARγ orchestrates the transcriptional response is unknown. This study demonstrates that PPARγ forms phase-separated droplets in vitro and solid-like nuclear condensates in cell, which is intriguingly mediated by its DNA binding domain characterized by the zinc finger motif. Furthermore, PPARγ forms nuclear condensates at PPREs sites through phase separation to compartmentalize its heterodimer partner RXRα to initiate PPARγ-specific transcriptional activation. Finally, using an optogenetic approach, the enforced formation of PPARγ/RXRα condensates leads to preferential enrichment at PPREs sites and significantly promotes the expression of PPARγ target genes. These results define a novel mechanism by which PPARγ engages the phase separation principles for efficient and specific transcriptional activation.

Original languageEnglish
Article number37
JournalCell Discovery
Volume8
Issue number1
DOIs
StatePublished - Dec 2022
Externally publishedYes

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