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E-GEOD-33659 GSE33659 transcription profiling by array Mus musculus

Direct Recruitment of Polycomb Repressive Complex 1 (PRC1) to Chromatin by Core Binding Transcription Factors (microarray)

·Released Feb. 10, 2012 ·Updated March 8, 2012
9
Samples
9
Assays
1
Array Platforms
Description

Polycomb repressive complexes (PRCs) play key roles in developmental epigenetic regulation. Yet the mechanisms that target PRCs to specific loci in mammalian cells remain incompletely understood. In this study, we show that Bmi1, a core component of Polycomb Repressive Complex 1 (PRC1), binds directly to the Runx1/CBFbeta transcription factor complex. Genome-wide studies in megakaryocytic cells demonstrate considerable chromatin occupancy overlap between the PRC1 core component Ring1b and Runx1/CBFbeta and functional regulation of a significant fraction of commonly bound genes. Bmi1/Ring1b and Runx1/CBFbeta deficiency generate partial phenocopies of one another in vivo. We also show that Ring1b occupies key Runx1 binding sites in primary murine thymocytes and that this occurs via Polycomb Repressive Complex 2 (PRC2) independent mechanisms. Genetic depletion of Runx1 results in reduced Ring1b binding at these sites in vivo. These findings provide evidence for site-specific PRC1 chromatin recruitment by core binding transcription factors in mammalian cells. shRNA mediated knockdown of CBFb, Ring1b and control in biological triplicate

Array Platforms
A-AFFY-45
Affymetrix GeneChip Mouse Genome 430 2.0 [Mouse430_2](9 items)
Sample Attributes
cell line
L8057
cell type
megakaryocytic cells
Organism
Mus musculus
variation
empty vector control, shRNA-mediated CBFb knockdown, shRNA-mediated Ring1b knockdown
Experiment Info
Accession
E-GEOD-33659
GEO ID
GSE33659
Type
transcription profiling by array
Organism
Mus musculus
Released
Feb. 10, 2012
Updated
March 8, 2012
Submitter
Robert G Roeder、 Hui Huang、 Alan B Cantor、 Adam Labadorf、 Huafeng Xie、 Leonard I Zon、 Tali Mazor、 Carla F Kim、 Ming Yu、 Tali Mazor、 Tyler B Moran、 Candace R Chouinard、 Hsuan-Ting Huang、 Katie L Kathrein、 Ichiro Taniuchi、 Sima Zacharek、 Thomas E Akie、 Andrew J Woo、 Ernest Fraenkel
Analysis Services
Analysis Services

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