PLX091068

GSE72238: Genome-wide H2B monoubiquitination regulates gene expression by coordinating H3K4me3 and H3K27me3 [RNA-Seq Data Set]

  • Organsim mouse
  • Type RNASEQ
  • Target gene
  • Project ARCHS4

Gene body-associated monoubiquitination of H2B (H2Bub1) coupled with promoter-associated active histone modifications such as trimethylation H3 on lysine 4 (H3K4me3) and acetylation H3 on lysine 27 (H3K27ac) facilitate gene transcription. However, surprisingly, only a subset of genes is altered in their expression following knockdown of H2B ubiquitin-protein ligases RNF20 or RNF40 in human cells. In order to obtain a more complete genome- and transcriptome-wide understanding of the role of H2Bub1 in gene transcription, we generated tamoxifen-inducible Rnf40 knockout mouse embryonic fibroblasts (MEFs). Mapping of H2Bub1, H3K4me3, H3K27me3, and H3K27ac occupancy identified an ascending gene cluster including bivalent genes, which is occupied by low to moderate amounts of H2Bub1 and exhibits high variability in transcription. We provide evidence that the variation in expression is highly associated with the variations in H3K4me3, H3K27me3, and H3K27ac occupancy. Moreover, these variably marked ascent genes are selectively regulated in Rnf40-deficient MEFs. Consistent with previous studies, the effect of Rnf40 loss on the expression of genes within this cluster is also variable with some genes demonstrating increased while others decreased mRNA levels following Rnf40 deletion. Importantly, we identified the Ezh2 gene as an Rnf40/H2Bub1 target whose expression significantly decreased in Rnf40-deficient MEFs. Notably, we show that genes upregulated following Rnf40 deletion are enriched for H3K27me3, which is decreased following Rnf40 deletion, and these effects can be mimicked by treating with a small molecule EZH2 inhibitor. On the other hand, consistent with findings in many eukaryotic systems, genes whose expression decreases following Rnf40 deletion show an enrichment of H3K4me3 and decreased levels following deletion. Together, we provide mechanistic information by which Rnf40, presumably via H2Bub1, modulates gene expression via coordination of the active and repressive marks H3K4me3 and H3K27me3. SOURCE: Steven,A,Johnsen (steven.johnsen@med.uni-goettingen.de) - AG Tumorepigenetics University Medical Center Göttingen

View on GEOView in Pluto

Key Features

Enhance your research with our curated data sets and powerful platform features. Pluto Bio makes it simple to find and use the data you need.

Learn More

14K+ Published Experiments

Access an extensive range of curated bioinformatics data sets, including genomic, transcriptomic, and proteomic data.

Easy Data Import

Request imports from GEO or TCGA directly within Pluto Bio. Seamlessly integrate external data sets into your workflow.

Advanced Search Capabilities

Utilize powerful search tools to quickly find the data sets relevant to your research. Filter by type, disease, gene, and more.

Analyze and visualize data for this experiment

Use Pluto's intuitive interface to analyze and visualize data for this experiment. Pluto's platform is equipped with an API & SDKs, making it easy to integrate into your internal bioinformatics processes.

Read about post-pipeline analysis

View QC data and experiment metadata

View quality control data and experiment metadata for this experiment.

Request import of other GEO data

Request imports from GEO or TCGA directly within Pluto Bio.

Chat with our Scientific Insights team