PRC2 complexes with JARID2, MTF2, and esPRC2p48 in ES cells to modulate ES cell pluripotency and somatic cell reprograming Journal Article


Authors: Zhang, Z.; Jones, A.; Sun, C. W.; Li, C.; Chang, C. W.; Joo, H. Y.; Dai, Q.; Mysliwiec, M. R.; Wu, L. C.; Gou, Y.; Yang, W.; Liu, K.; Pawlik, K. M.; Erdjument-Bromage, H.; Tempst, P.; Lee, Y.; Min, J.; Townes, T. M.; Wang, H.
Article Title: PRC2 complexes with JARID2, MTF2, and esPRC2p48 in ES cells to modulate ES cell pluripotency and somatic cell reprograming
Abstract: Polycomb repressive complex two (PRC2) has been implicated in embryonic stem (ES) cell pluripotency; however, the mechanistic roles of this complex are unclear. It was assumed that ES cells contain PRC2 with the same subunit composition as that identified in HeLa cells and Drosophila embryos. Here, we report that PRC2 in mouse ES cells contains at least three additional subunits: JARID2, MTF2, and a novel protein denoted esPRC2p48. JARID2, MTF2, and esPRC2p48 are highly expressed in mouse ES cells compared to differentiated cells. Importantly, knockdowns of JARID2, MTF2, or esPRC2p48 alter the level of PRC2-mediated H3K27 methylation and result in the expression of differentiation-associated genes in ES cells. Interestingly, expression of JARID2, MTF2, and esPRC2p48 together, but not individually, enhances Oct4/Sox2/Klf4-mediated reprograming of mouse embryonic fibroblasts (MEFs) into induced pluripotent stem cells, whereas knockdown or knockout of JARID2, MTF2, or esPRC2p48 significantly inhibits reprograming. JARID2, MTF2, and esPRC2p48 modulate H3K27 methylation and facilitate repression of lineage-associated gene expression when transduced into MEFs, and synergistically stimulate the histone methyltransferase activity of PRC2 in vitro. Therefore, these studies identify JARID2, MTF2, and esPRC2p48 as important regulatory subunits of PRC2 in ES cells and reveal critical functions of these subunits in modulating PRC2's activity and gene expression both in ES cells and during somatic cell reprograming. © AlphaMed Press.
Keywords: protein expression; unclassified drug; nonhuman; protein function; animal cell; mouse; complex formation; somatic cell; gene expression; embryo; embryonic stem cell; epigenetics; histone methyltransferase; histone h3; fibroblast; pluripotent stem cell; protein subunit; octamer transcription factor 4; transcription factor sox2; polycomb group protein; kruppel like factor 4; histone modification; histone methylation; polycomb repressive complex 2 protein; protein esprc2p48; protein jarid2; protein mtf2
Journal Title: Stem Cells
Volume: 29
Issue: 2
ISSN: 1066-5099
Publisher: AlphaMed Press  
Date Published: 2011-02-01
Start Page: 229
End Page: 240
Language: English
DOI: 10.1002/stem.578
PROVIDER: scopus
PUBMED: 21732481
PMCID: PMC3711030
DOI/URL:
Notes: --- - "Export Date: 23 June 2011" - "CODEN: STCEE" - "Source: Scopus"
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  1. Paul J Tempst
    324 Tempst