Identification of a novel enhancer of CEBPE essential for granulocytic differentiation.
Pavithra ShyamsunderMahalakshmi ShanmugasundaramAnand MayakondaPushkar DakleWeoi Woon TeohLin HanDeepika KanojiaMei Chee LimMelissa FullwoodOmer AnHenry YangJizhong ShiMohammad Zakir HossainVikas MadanH Phillip KoefflerPublished in: Blood (2019)
CCAAT/enhancer binding protein ε (CEBPE) is an essential transcription factor for granulocytic differentiation. Mutations of CEBPE occur in individuals with neutrophil-specific granule deficiency (SGD), which is characterized by defects in neutrophil maturation. Cebpe-knockout mice also exhibit defects in terminal differentiation of granulocytes, a phenotype reminiscent of SGD. Analysis of DNase I hypersensitive sites sequencing data revealed an open chromatin region 6 kb downstream of the transcriptional start site of Cebpe in murine myeloid cells. We identified an interaction between this +6-kb region and the core promoter of Cebpe using circular chromosome conformation capture sequencing (4C-seq). To understand the role of this putative enhancer in transcriptional regulation of Cebpe, we targeted it using catalytically inactive Cas9 fused to Krüppel-associated box (KRAB) domain and observed a significant downregulation of transcript and protein levels of CEBPE in cells expressing guide RNA targeting the +6-kb region. To further investigate the role of this novel enhancer further in myelopoiesis, we generated mice with deletion of this region using CRISPR/Cas9 technology. Germline deletion of the +6-kb enhancer resulted in reduced levels of CEBPE and its target genes and caused a severe block in granulocytic differentiation. We also identified binding of CEBPA and CEBPE to the +6-kb enhancer, which suggests their role in regulating the expression of Cebpe In summary, we have identified a novel enhancer crucial for regulating expression of Cebpe and required for normal granulocytic differentiation.
Keyphrases
- binding protein
- transcription factor
- crispr cas
- dna binding
- induced apoptosis
- single cell
- gene expression
- genome editing
- genome wide
- genome wide identification
- type diabetes
- cell cycle arrest
- skeletal muscle
- oxidative stress
- bone marrow
- signaling pathway
- dna damage
- acute myeloid leukemia
- cell proliferation
- big data
- machine learning
- electronic health record
- artificial intelligence
- heat stress
- endoplasmic reticulum stress
- small molecule
- high fat diet induced
- drug delivery
- metabolic syndrome
- heat shock
- data analysis