CIDEA
cell death inducing DFFA like effector a | CIDE-A

This gene encodes the homolog of the mouse protein Cidea that has been shown to activate apoptosis. This activation of apoptosis is inhibited by the DNA fragmentation factor DFF45 but not by caspase inhibitors. Mice that lack functional Cidea have higher metabolic rates, higher lipolysis in brown adipose tissue and higher core body temperatures when subjected to cold. These mice are also resistant to diet-induced obesity and diabetes. This suggests that in mice this gene product plays a role in thermogenesis and lipolysis. Alternatively spliced transcripts have been identified. [provided by RefSeq, Aug 2010]

Biological processes 55 terms
apoptotic process (GO:0006915)apoptotic process (GO:0006915)cellular response to cold (GO:0070417)cytoplasm (GO:0005737)cytoplasm (GO:0005737)cytosol (GO:0005829)cytosol (GO:0005829)fat cell differentiation (GO:0045444)fat cell differentiation (GO:0045444)intermembrane lipid transfer (GO:0120009)lipid droplet (GO:0005811)lipid droplet (GO:0005811)lipid droplet (GO:0005811)lipid droplet fusion (GO:0160077)lipid droplet fusion (GO:0160077)lipid droplet fusion (GO:0160077)lipid metabolic process (GO:0006629)lipid storage (GO:0019915)lipid storage (GO:0019915)lipid storage (GO:0019915)lipid storage (GO:0019915)lipid transfer activity (GO:0120013)lipid transfer activity (GO:0120013)lipid transfer activity (GO:0120013)mitochondrial envelope (GO:0005740)mitochondrial envelope (GO:0005740)mitochondrion (GO:0005739)mitochondrion (GO:0005739)negative regulation of cold-induced thermogenesis (GO:0120163)negative regulation of cold-induced thermogenesis (GO:0120163)negative regulation of cytokine production (GO:0001818)negative regulation of execution phase of apoptosis (GO:1900118)negative regulation of execution phase of apoptosis (GO:1900118)negative regulation of lipid catabolic process (GO:0050995)negative regulation of lipid catabolic process (GO:0050995)negative regulation of lipid catabolic process (GO:0050995)negative regulation of lipid catabolic process (GO:0050995)negative regulation of multicellular organismal process (GO:0051241)negative regulation of transforming growth factor beta receptor signaling pathway (GO:0030512)negative regulation of transforming growth factor beta receptor signaling pathway (GO:0030512)negative regulation of tumor necrosis factor production (GO:0032720)nucleus (GO:0005634)nucleus (GO:0005634)nucleus (GO:0005634)phosphatidic acid binding (GO:0070300)phosphatidic acid binding (GO:0070300)positive regulation of DNA-templated transcription (GO:0045893)positive regulation of cold-induced thermogenesis (GO:0120162)protein homodimerization activity (GO:0042803)regulation of apoptotic DNA fragmentation (GO:1902510)regulation of apoptotic DNA fragmentation (GO:1902510)response to stilbenoid (GO:0035634)temperature homeostasis (GO:0001659)temperature homeostasis (GO:0001659)transcription coactivator activity (GO:0003713)
Expression (TPM)
CIDEA — as a Regulated Gene

TFs regulating CIDEA 0 TFs

Transcription factors with Perturb-seq knockdown data for CIDEA. The Binding column indicates whether any binding evidence exists for this TF–gene pair (ChIP-seq or motif footprint peaks). The Mean coef is the average Perturb-seq regression coefficient across active gRNAs (positive = CIDEA upregulated upon KD; negative = downregulated). The Outlier column indicates whether this gene is in the top or bottom 5% of all TF knockdown effects.

Data: Effect:
TF Mean coef Binding Outlier TF→Gene link

Elements linked to CIDEA

Open chromatin peaks (ATAC-seq) in the genomic neighbourhood of CIDEA, linked by TSS proximity or chromatin conformation (Multiome / HiCAR). Each element overlaps at least one TF ChIP-seq binding site — the TFs column shows how many distinct TFs bind that element.

Accessibility Element Dist. to TSS Link type TFs
chr18:12,246,992–12,247,182 7.2 kb Proximal (<10kb) 82
chr18:12,253,776–12,254,799 at TSS At TSS 162

Genome Browser

Genomic view of the CIDEA locus showing ATAC-seq accessibility and RNA-seq expression across the ESC → DE time course, together with TF binding peaks and element-to-TSS loop connections.

chr18:12,236,992 – 12,264,799
Proximal 1 kb Distal 10 kb Multiome HiCAR ATAC-seq RNA-seq