SCUBA

CEBPA — CCAAT enhancer binding protein alpha

CEBPA belongs to a gene co-expression module in 3 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.

CEBPA's module in each cell type

Cell typeModuleShares the module with
CD4⁺ T cellsTreg regulation
Immune regulation
BCAS3, CDK14, CLNK, CNIH1, COL9A2, CPA5, FCRL3, GEM +8 moreView in SCUBA
Gamma-delta T cellsTerminal T Differentiation
T cell maturation
AXIN1, B3GAT1, C1orf174, ENC1, F2R, GLUL, GTF3C1, IGF2R +10 more
Hematopoietic progenitor cellsGranulocyte Commitment
Granulocyte development
C16orf74, C1QTNF4, CEACAM4, CLEC11A, CPVL, CSF3R, IGFBP2, IGLL1 +6 more

About the gene

SynonymsC/EBP-alpha, CEBP
Chromosome19: 33299934-33302534
Predicted locationIntracellular
Essential geneNo
Protein classCancer-related genes, Disease related genes, Human disease related genes, Predicted intracellular proteins, Transcription factors
Molecular functionActivator, Developmental protein, DNA-binding
Biological processHost-virus interaction, Transcription, Transcription regulation

Function

Transcription factor that coordinates proliferation arrest and the differentiation of myeloid progenitors, adipocytes, hepatocytes, and cells of the lung and the placenta. Binds directly to the consensus DNA sequence 5'-T[TG]NNGNAA[TG]-3' acting as an activator on distinct target genes. During early embryogenesis, plays essential and redundant functions with CEBPB. Essential for the transition from common myeloid progenitors (CMP) to granulocyte/monocyte progenitors (GMP). Critical for the proper development of the liver and the lung (By similarity). Necessary for terminal adipocyte differentiation, is required for postnatal maintenance of systemic energy homeostasis and lipid storage (By similarity). To regulate these different processes at the proper moment and tissue, interplays with other transcription factors and modulators. Down-regulates the expression of genes that maintain cells in an undifferentiated and proliferative state through E2F1 repression, which is critical for its ability to induce adipocyte and granulocyte terminal differentiation. Reciprocally E2F1 blocks adipocyte differentiation by binding to specific promoters and repressing CEBPA binding to its target gene promoters. Proliferation arrest also depends on a functional binding to SWI/SNF complex. In liver, regulates gluconeogenesis and lipogenesis through different mechanisms. To regulate gluconeogenesis, functionally cooperates with FOXO1 binding to IRE-controlled promoters and regulating the expression of target genes such as PCK1 or G6PC1. To modulate lipogenesis, interacts and transcriptionally synergizes with SREBF1 in promoter activation of specific lipogenic target genes such as ACAS2. In adipose tissue, seems to act as FOXO1 coactivator accessing to ADIPOQ promoter through FOXO1 binding sites (By similarity). Can act as dominant-negative. Binds DNA and have transctivation activity, even if much less efficiently than isoform 2. Does not inhibit cell proliferation. Directly and specifically enhances ribosomal DNA transcription interacting with RNA polymerase I-specific cofactors and inducing histone acetylation

Human Protein Atlas · Open Targets · UniProt

Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.