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E-GEOD-57500 SRP041829, GSE57500 ChIP-seq, RNA-seq of coding RNA Mus musculus

Association of genes regulated by Ezh2 and trimethylation of histone 3 lysine 27

·发布 2014年8月4日 ·更新 2014年12月10日
16
样本数
16
实验数
1
相关文献
实验描述

Differentiation of naïve CD4+ T cells into effector (Th1, Th2 and Th17) and induced regulatory (iTreg) T cells requires lineage-specifying transcription factors and epigenetic modifications that allow appropriate repression or activation of gene transcription. The epigenetic silencing of cytokine genes is associated with the repressive H3K27 trimethylation mark, mediated by Ezh2 or Ezh1 methyltransferase components of the polycomb repressive complex 2 (PRC2). EZH2 over-expression and activating mutations are implicated in tumorigenesis and correlate with poor prognosis in several tumor types 35. This spurred the development of EZH2 inhibitors which, by inducing tumor cell growth arrest and cell death, show therapeutic promise in cancer. A role for Ezh2 in suppressing Th1 and Th2 cytokine production and survival has recently been reported. It is not entirely clear whether Ezh2-PRC2 plays a role in H3K27me3 in cytokine loci in naïve CD4+ T cells and whether H3K27me3 has a non-redundant role in T helper cell lineage differentiation and survival. Here, we investigate the effects of T cell-specific Ezh2 deletion to determine the role that Ezh2-PRC2 plays in regulating the fate of differentiating naïve CD4+ T cells. Loss of Ezh2 altered the expression of 1328 genes in Th0 and 1979 genes in iTreg cells. Gene expression changes were positively correlated in both cell types, indicating that Ezh2 targets similar genes in these cells. As expected, Ifng was one of the genes most increased in expression by following loss of Ezh2. In addition, expression of Tbx21 homolog Eomes, a transcription factor that regulates IFNG production, was also significantly increased. We then performed H3K27me3 ChIP-seq on Ezh2fl/fl and Ezh2fl/fl.CD4Cre Th0 cells. Consistent with cellular phenotype and RNA-seq data, we observed a loss of the H3K27me3 at Eomes, Il4 and Il10 loci . Very low levels of H3K27me3 marks were present at Ifng and Tbx21 loci in differentiated Ezh2fl/fl Th0 cells, suggesting that upon differentiation, upregulation or activation of transcription factors accounts for IFNG overproduction. A significant loss of H3K27me3 was observed >2kb upstream of Gata3 locus , however this did not result in increased transcription . Of the 22381 genes tested for changes in H3K27me3, 1360 showed a statistically significant decrease in Ezh2fl/fl.CD4Cre Th0 cells, compared to wildtype. Furthermore, 404 of these genes also showed a concomitant gain in expression in Ezh2fl/fl.CD4Cre Th0 cells, suggesting that these loci are likely direct Ezh2-PRC2 targets. There are 3 biological replicates each of Ezh2fl/fl.CD4Cre and Ezh2fl/fl in both Th0 and iTreg cells for the RNA-seq experiment. There are 2 biological replicates each of Ezh2fl/fl.CD4Cre and Ezh2fl/fl in Th0 cells for the ChIP-seq experiment.

参考文献
The polycomb repressive complex 2 governs life and death of peripheral T cells.
Zhang Y, Kinkel S, Maksimovic J, Bandala-Sanchez E, Tanzer MC, Naselli G, Zhang JG, Zhan Y, Lew AM, Silke J, Oshlack A, Blewitt ME, Harrison LC
PMID: 24951427
样本属性
cell type
in vitro differentiated induced regulatory T cell, in vitro neutrally activated Th0 cell
chip antibody
None, Polyclonal rabbit-anti-H3K27me3 (10 μg/ChIP)
chip antibody cat. #
None, 07-449
chip antibody vendor
None, Millipore
genotype
Ezh2-/-, wild type
organism
Mus musculus
strain
Ezh2 fl/fl, Ezh2 fl/fl.CD4Cre
实验信息
登记号
E-GEOD-57500
GEO 编号
SRP041829, GSE57500
实验类型
ChIP-seq, RNA-seq of coding RNA
物种
Mus musculus
发布日期
2014年8月4日
更新日期
2014年12月10日
提交者
Esther Bandala-Sanchez、 Leonard C Harrison、 Marnie E Blewitt、 Jian-Guo Zhang、 Jovana Maksimovic、 Maria C Tanzer、 Andrew M Lew、 John Silke、 Sarah Kinkel、 Yuxia Zhang、 Jovana Maksimovic、 Gaetano Naselli、 Yifan Zhan、 Alicia Oshlack
分析服务
分析服务

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