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SREBF2 Produkte

(Sterol Regulatory Element Binding Transcription Factor 2 (SREBF2))
This gene encodes a ubiquitously expressed transcription factor that controls cholesterol homeostasis by stimulating transcription of sterol-regulated genes. The encoded protein contains a basic helix-loop-helix-leucine zipper (bHLH-Zip) domain. [provided by RefSeq, Jul 2008].

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Ausgewählte SREBF2 Kategorien

SREBF2 Antikörper

High quality antibodies with extensive validation data.

SREBF2 ELISA Kits

Reliable ELISA kits for a wide range of species.

SREBF2 Proteine

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

Empfohlene SREBF2 Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Applikation WB, ELISA, IHC, IF
Validierungen
  • (5)
Kat. Nr. ABIN3032752
Menge 0.4 mL
Datenblatt Datenblatt
Reaktivität Human
Applikation ELISA, IHC, IF
Validierungen
  • (3)
Kat. Nr. ABIN7170782
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Human
Applikation WB, IF, IHC (p)
Validierungen
  • (3)
Kat. Nr. ABIN654630
Menge 400 μL
Datenblatt Datenblatt

Empfohlene SREBF2 ELISA Kits

Produkt
Reaktivität
Analytical Method
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Analytical Method Quantitative Sandwich ELISA
Validierungen
  • (1)
Kat. Nr. ABIN6970433
Menge 96 tests
Datenblatt Datenblatt
Reaktivität Rat
Analytical Method Quantitative Sandwich ELISA
Validierungen
Kat. Nr. ABIN5592659
Menge 96 tests
Datenblatt Datenblatt
Reaktivität Mouse
Analytical Method
Validierungen
Kat. Nr. ABIN1159829
Menge 96 tests
Datenblatt Datenblatt

Empfohlene SREBF2 Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1321309
Menge 10 μg
Datenblatt Datenblatt
Reaktivität Human
Source Tobacco (Nicotiana tabacum)
Validierungen
Kat. Nr. ABIN3114501
Menge 1 mg
Datenblatt Datenblatt
Reaktivität Mouse
Source Tobacco (Nicotiana tabacum)
Validierungen
Kat. Nr. ABIN3135009
Menge 1 mg
Datenblatt Datenblatt

Neueste Publikationen zu unseren SREBF2 Produkten

Sharma, Gupta, Dahiya, Kumar, Vaiphei, Agnihotri: "Clinical relevance of cholesterol homeostasis genes in colorectal cancer." in: Biochimica et biophysica acta. Molecular and cell biology of lipids, Vol. 1864, Issue 10, pp. 1314-1327, (2019) (PubMed).

Nguyen, Ishida, Shang, Shu, Bianchetti, Karpel-Massler, Siegelin: "Activation of LXR Receptors and Inhibition of TRAP1 Causes Synthetic Lethality in Solid Tumors." in: Cancers, Vol. 11, Issue 6, (2019) (PubMed).

Lee, Kim, Kim, Park, Park: "Proteasome inhibition protects against diet-induced gallstone formation through modulation of cholesterol and bile acid homeostasis." in: International journal of molecular medicine, Vol. 41, Issue 3, pp. 1715-1723, (2018) (PubMed).

Mast, Lin, Anderson, Bjorkhem, Pikuleva: "Transcriptional and post-translational changes in the brain of mice deficient in cholesterol removal mediated by cytochrome P450 46A1 (CYP46A1)." in: PLoS ONE, Vol. 12, Issue 10, pp. e0187168, (2017) (PubMed).

Ratovitski: "Delta Np63 alpha – Responsive microRNA Modulate the Expression of Metabolic Enzymes." in: Current pharmaceutical biotechnology, Vol. 16, Issue 9, pp. 832-50, (2015) (PubMed).

Daniëls, Smans, Royaux, Chypre, Swinnen, Zaidi: "Cancer cells differentially activate and thrive on de novo lipid synthesis pathways in a low-lipid environment." in: PLoS ONE, Vol. 9, Issue 9, pp. e106913, (2014) (PubMed).

Takahashi, Kishimoto, Konishi, Fujita, Ito, Shimokado, Maruyama, Ishigami: "Ascorbic acid deficiency affects genes for oxidation-reduction and lipid metabolism in livers from SMP30/GNL knockout mice." in: Biochimica et biophysica acta, Vol. 1840, Issue 7, pp. 2289-98, (2014) (PubMed).

Kondo, Masutomi, Noda, Ozawa, Takahashi, Handa, Maruyama, Shimizu, Ishigami: "Senescence marker protein-30/superoxide dismutase 1 double knockout mice exhibit increased oxidative stress and hepatic steatosis." in: FEBS open bio, Vol. 4, pp. 522-32, (2014) (PubMed).

Zhu, Jiang, Chehab: "FoxO4 interacts with the sterol regulatory factor SREBP2 and the hypoxia inducible factor HIF2α at the CYP51 promoter." in: Journal of lipid research, Vol. 55, Issue 3, pp. 431-42, (2014) (PubMed).

Karanth, Tran, Kuberan, Schlegel: "Polyunsaturated fatty acyl-coenzyme As are inhibitors of cholesterol biosynthesis in zebrafish and mice." in: Disease models & mechanisms, Vol. 6, Issue 6, pp. 1365-77, (2013) (PubMed).

Synonyme und alternative Namen zu SREBF2

sterol regulatory element binding transcription factor 2 (SREBF2), sterol regulatory element binding transcription factor 2 (srebf2), sterol regulatory element binding factor 2 (Srebf2), sterol regulatory element binding transcription factor 2 L homeolog (srebf2.L), sterol regulatory element binding transcription factor 2 (Srebf2), AI608257, bHLHd2, lop13, nuc, SREBF2, Srebf2_retired, SREBP-2, srebp2, SREBP2, SREBP2gc, zgc:158371

Bezeichner auf Proteinebene für SREBF2

  • sterol regulatory element binding transcription factor 2
  • sterol regulatory element-binding protein 2-like
  • sterol regulatory element binding protein 2
  • SREBP-2
  • sterol regulatory element-binding protein 2
  • sterol regulatory element-binding transcription factor 2
  • class D basic helix-loop-helix protein 2
  • sterol regulatory element binding factor 2
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