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CIDEC encodes a member of the cell death-inducing DNA fragmentation factor-like effector family. Additionally we are shipping CIDEC Antibodies (77) and CIDEC Kits (1) and many more products for this protein.
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CIDEC may affect body measurement traits and meat quality traits in Qinchuan cattle, and could be used in marker-assisted selection.
This paper examined the tissue expression profile of CIDEC gene in cattle.
data suggested that Cidec could interact with and down-regulate AMPKalpha (show GRK4 Proteins) through an ubiquitin-proteasome degradation pathway, which provided a possible mechanism of Cidec in promoting human adipocytes differentiation
Hepatic expression of FSP27/CIDEC is highly up-regulated in in patients with alcoholic steatohepatitis and this up-regulation contributes to alcohol-induced liver damage.
It is insinuated that VAT is associated with late phase obesity CIDEC decrease and insulin (show INS Proteins) resistance, while pioglitazone enhances CIDEC through activation of PPAR-gamma (show PPARG Proteins), increases its expression, and decreases lipolysis.
After bariatric surgery-induced weight loss, CIDEC/FSP27 gene/protein expression in SAT increased significantly. Findings suggest a positive functional interaction between CIDEC/FSP27 & mitochondrial biogenesis-related genes in human adipose tissue
Data indicate that fat-specific protein 27 (FSP27) increases the inhibitory effect of transcription factor Egr1 (show EGR1 Proteins) on the adipose triglyceride lipase (ATGL (show PNPLA2 Proteins)) promoter.
results demonstrate a crucial role for FSP27-ATGL (show PNPLA2 Proteins) interactions in regulating lipolysis, triglyceride accumulation, and insulin (show INS Proteins) signaling in human adipocytes
homo-dimeric structure of the CIDE-N domain of FSP27 will provide important information that will enable better understanding of the function of FSP27.
CIDE proteins expression correlate with tumor and survival characteristics in patients with renal cell carcinoma (show MOK Proteins).
Fsp27/CIDEC is a CREB (show CREB1 Proteins) target gene induced during early fasting in liver and regulated by FA oxidation rate.
The results suggest that FSP27 not only modulates LD homeostasis but also modulates the response to osmotic stress via a physical interaction with NFAT5 (show NFAT5 Proteins) at the LD surface.
Lipid droplet (LD) expansion depends on the FSP27 carboxy-terminal domain (amino acids 131-239). The negative charge of acidic residues D215, E218, E219 and E220 in the polar carboxy-terminal region (amino acids 202-239) is essential for LD enlargement.
Data (including data from studies in knockout mice) suggest Cideb (show CIDEB Proteins) promotes lipid storage as droplets in hepatocytes under normal diet conditions; Cidea (show CIDEA Proteins)/Cidec promote fusion of lipid droplets leading to liver steatosis in fasting (16h) and obese mice.
Cidea (show CIDEA Proteins) is highly associated with adiposity and insulin (show INS Proteins) resistance, whereas Cidec is related to insulin (show INS Proteins) sensitivity
Hepatic expression of FSP27/CIDEC is highly up-regulated in mice following chronic-plus-binge ethanol feeding and this up-regulation contributes to alcohol-induced liver damage.
Insulin (show INS Proteins) resistance and white adipose tissue inflammation are uncoupled in energetically challenged Fsp27-deficient mice.
CREBH (show CREB3L3 Proteins)-Fsp27beta axis is important for regulating lipid droplet dynamics and triglyceride storage in the liver
Adipocyte-specific disruption of fat-specific protein 27 causes hepatosteatosis and insulin (show INS Proteins) resistance in high-fat diet-fed mice.
Promotion of FSP27 degradation may be an important factor responsible for the beneficial effect of AMPK (show PRKAA1 Proteins) activators on energy metabolism
FSP27 mRNA expression in the liver depends on the etiology of fatty liver.
CIDEC protects lipid droplets (LDs) by decreasing the specific surface area of LDs and is involved in the regulation of hepatic lipid deposition.
CIDEa (show CIDEA Proteins) and CIDEc mRNA level in white adipose tissues and liver were significantly higher in obese pigs than in their lean counterparts
This gene encodes a member of the cell death-inducing DNA fragmentation factor-like effector family. Members of this family play important roles in apoptosis. The encoded protein promotes lipid droplet formation in adipocytes and may mediate adipocyte apoptosis. This gene is regulated by insulin and its expression is positively correlated with insulin sensitivity. Mutations in this gene may contribute to insulin resistant diabetes. A pseudogene of this gene is located on the short arm of chromosome 3. Alternatively spliced transcript variants that encode different isoforms have been observed for this gene.
cell death-inducing DFFA-like effector c
, cell death activator CIDE-3
, cell death-inducing DFFA-like effector protein C
, fat-specific protein FSP27 homolog
, Cell death activator CIDE-3
, fat specific protein 27
, fat specific gene 27
, fat-specific protein FSP27
, cell-death-inducing DNA-fragmentation-factor-like effector C