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CIDEC Produkte

(Cell Death-Inducing DFFA-Like Effector C (CIDEC))
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. [provided by RefSeq, Dec 2010].

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Ausgewählte CIDEC Kategorien

CIDEC Antikörper

High quality antibodies with extensive validation data.

CIDEC Proteine

Proteins for various applications incl. WB, ELISA, IF etc.

Empfohlene CIDEC Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Applikation WB, IHC, IP, ICC
Validierungen
  • (7)
Kat. Nr. ABIN7440137
Menge 100 μL
Datenblatt Datenblatt
Reaktivität Human
Applikation WB, ELISA, ICC, FACS
Validierungen
  • (6)
Kat. Nr. ABIN5542500
Menge 100 μL
Datenblatt Datenblatt
Reaktivität Rat
Applikation WB, IHC, IP, ICC
Validierungen
  • (3)
Kat. Nr. ABIN7443797
Menge 100 μL
Datenblatt Datenblatt

Empfohlene CIDEC Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Source Escherichia coli (E. coli)
Validierungen
  • (1)
Kat. Nr. ABIN7122226
Menge 50 μg
Datenblatt Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1349479
Menge 10 μg
Datenblatt Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1349481
Menge 10 μg
Datenblatt Datenblatt

Neueste Publikationen zu unseren CIDEC Produkten

Sharma, Vestergaard, Jessen, Kolind-Thomsen, Nellemann, Nielsen, Vendelbo, Møller, Sharma, Lee, Kopchick, Jørgensen, Puri: "Growth hormone acts along the PPARγ-FSP27 axis to stimulate lipolysis in human adipocytes." in: American journal of physiology. Endocrinology and metabolism, Vol. 316, Issue 1, pp. E34-E42, (2019) (PubMed).

He, Zhang, Gan: "CIDEC Is Involved in LPS-Induced Inflammation and Apoptosis in Renal Tubular Epithelial Cells." in: Inflammation, Vol. 41, Issue 5, pp. 1912-1921, (2019) (PubMed).

Krautbauer, Neumeier, Rein-Fischboeck, Haberl, Tilg, Eisinger, Buechler: "Adipocyte Hypertrophy and Improved Postprandial Lipid Response in Beta 2 Syntrophin Deficient Mice." in: Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology, Vol. 52, Issue 5, pp. 1151-1165, (2019) (PubMed).

Christensen, Nellemann, Jørgensen, Pedersen, Jessen: "Erythropoietin does not activate erythropoietin receptor signaling or lipolytic pathways in human subcutaneous white adipose tissue in vivo." in: Lipids in health and disease, Vol. 15, Issue 1, pp. 160, (2016) (PubMed).

Hasenfuss, Bakiri, Thomsen, Williams, Auwerx, Wagner: "Regulation of steatohepatitis and PPARγ signaling by distinct AP-1 dimers." in: Cell metabolism, Vol. 19, Issue 1, pp. 84-95, (2014) (PubMed).

Jang, Kim, Jung, Kim, Han, Park: "Bone marrow-derived cells play a major role in kidney fibrosis via proliferation and differentiation in the infiltrated site." in: Biochimica et biophysica acta, Vol. 1832, Issue 6, pp. 817-25, (2013) (PubMed).

Dabir, Kluge, McColl, Liu, Lam, Halmos, Wildey, Dowlati: "PIAS3 activates the intrinsic apoptotic pathway in non-small cell lung cancer cells independent of p53 status." in: International journal of cancer, Vol. 134, Issue 5, pp. 1045-54, (2013) (PubMed).

Ito, Nagasawa, Omae, Ide, Akasaka, Murakami: "Differential regulation of CIDEA and CIDEC expression by insulin via Akt1/2- and JNK2-dependent pathways in human adipocytes." in: Journal of lipid research, Vol. 52, Issue 8, pp. 1450-60, (2011) (PubMed).

Swist, Chen, Qiao, Caldwell, Gruber, Scoggan: "Excess dietary iodine differentially affects thyroid gene expression in diabetes, thyroiditis-prone versus -resistant BioBreeding (BB) rats." in: Molecular nutrition & food research, Vol. 55, Issue 12, pp. 1875-86, (2011) (PubMed).

Guillén, Navarro, Arnal, Noone, Arbonés-Mainar, Acín, Surra, Muniesa, Roche, Osada: "Microarray analysis of hepatic gene expression identifies new genes involved in steatotic liver." in: Physiological genomics, Vol. 37, Issue 3, pp. 187-98, (2009) (PubMed).

Synonyme und alternative Namen zu CIDEC

cell death inducing DFFA like effector c (cidec), cell death inducing DFFA like effector c S homeolog (cidec.S), cell death inducing DFFA like effector c (CIDEC), cell death-inducing DFFA-like effector c (cidec), Cell death activator CIDE-3 (cidec), cell death-inducing DFFA-like effector c (Cidec), cide-3, CIDE-3, CIDE-C, CIDE3, cidec, CIDEC, fd36c01, FPLD5, fsp27, FSP27, Fsp27, MGC82483, MGC89274, wu:fd36c01, zgc:153033

Bezeichner auf Proteinebene für CIDEC

  • 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
  • CIDE-3alpha
  • fat specific gene 27
  • fat-specific protein FSP27
  • cell-death-inducing DNA-fragmentation-factor-like effector C
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