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Updated: Apr 19, 2026

A Rapid In Vivo Bioassay for Developmentally Active Enhancers
RLF/ZFP292 stabilize CoREST-linked LSD1 engagement at bivalent promoters to safeguard pluripotency
Takamasa Ito1, Masahito Yoshino1, Shin-Ya Isobe1
1Department of Biological Sciences, Graduate School of Science, The University of Osaka, Toyonaka, Japan.
Abstract:
How CoREST-linked chromatin activities are regulated at promoters independently of canonical REST repression remains unclear. Here, we identify the zinc-finger proteins rearranged L-myc fusion (RLF) and ZFP292 as redundant promoter-associated factors that stabilize CoREST-linked LSD1 engagement within RCOR2-containing CoREST assemblies at active and bivalent promoters in embryonic stem cells. Loss of RLF/ZFP292 reduces ZMYM3 occupancy while diminishing LSD1 enrichment at target promoters, whereas RCOR2 and HDAC1 occupancy remain largely unchanged, consistent with a role in stabilizing enzymatic engagement rather than in complex recruitment. Loss of RLF/ZFP292 increases promoter-associated active chromatin features at both promoter classes, but transcriptional upregulation is most evident at genes with bivalent promoters. At a subset of active promoters, selective loss of ZMYM3 coincides with reduced transcription despite retained RCOR2-HDAC1-LSD1 signals. Together, these findings reveal a REST-independent mechanism in which RLF/ZFP292 modulate the functional output of promoter-associated CoREST assemblies to maintain transcriptional balance in pluripotent cells.
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