Article ID Journal Published Year Pages File Type
1996703 Molecular Cell 2010 15 Pages PDF
Abstract

SummaryPolycomb proteins play essential roles in stem cell renewal and human disease. Recent studies of HOX genes and X inactivation have provided evidence for RNA cofactors in Polycomb repressive complex 2 (PRC2). Here we develop a RIP-seq method to capture the PRC2 transcriptome and identify a genome-wide pool of >9000 PRC2-interacting RNAs in embryonic stem cells. The transcriptome includes antisense, intergenic, and promoter-associated transcripts, as well as many unannotated RNAs. A large number of transcripts occur within imprinted regions, oncogene and tumor suppressor loci, and stem cell-related bivalent domains. We provide evidence for direct RNA-protein interactions, most likely via the Ezh2 subunit. We also identify Gtl2 RNA as a PRC2 cofactor that directs PRC2 to the reciprocally imprinted Dlk1 coding gene. Thus, Polycomb proteins interact with a genome-wide family of RNAs, some of which may be used as biomarkers and therapeutic targets for human disease.

► RIP-seq technique enables capturing genome-wide Polycomb-bound RNAs ► PRC2 interacts with a family of >9000 RNAs ► RNAs occur within imprinted, oncogene/tumor suppressor, and stem-cell loci ► Gtl2 controls Dlk1 imprinting by targeting PRC2

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