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PFKFB3 Produkte

(6-phosphofructo-2-Kinase/fructose-2,6-Biphosphatase 3 (PFKFB3))

Kategorien

Synthesis and degradation of fructose 2,6-bisphosphate (By similarity).

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Ausgewählte PFKFB3 Kategorien

PFKFB3 Antikörper

High quality antibodies with extensive validation data.

PFKFB3 Proteine

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

Empfohlene PFKFB3 Antikörper

Produkt
Reaktivität
Applikation
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Applikation WB, IHC
Validierungen
  • (6)
Kat. Nr. ABIN1680620
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Human
Applikation WB, ELISA, IP
Validierungen
  • (3)
  • (4)
Kat. Nr. ABIN518808
Menge 100 μg
Datenblatt Datenblatt
Reaktivität Human
Applikation WB, IHC
Validierungen
  • (5)
Kat. Nr. ABIN6145485
Menge 100 μL
Datenblatt Datenblatt

Empfohlene PFKFB3 ELISA Kits

Produkt
Reaktivität
Analytical Method
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Analytical Method Quantitative Sandwich ELISA
Validierungen
  • (1)
Kat. Nr. ABIN6964498
Menge 96 tests
Datenblatt Datenblatt

Empfohlene PFKFB3 Proteine

Produkt
Reaktivität
Source
Validierungen
Kat. Nr.
Menge
Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1314738
Menge 10 μg
Datenblatt Datenblatt
Reaktivität Human
Source Wheat germ
Validierungen
  • (1)
Kat. Nr. ABIN1314740
Menge 10 μg
Datenblatt Datenblatt
Reaktivität Human
Source Escherichia coli (E. coli)
Validierungen
  • (1)
Kat. Nr. ABIN7319866
Menge 50 μg
Datenblatt Datenblatt

Neueste Publikationen zu unseren PFKFB3 Produkten

Heydasch, Kessler, Warnke, Eschrich, Scholz, Bigl: "Functional diversity of PFKFB3 splice variants in glioblastomas." in: PloS one, Vol. 16, Issue 7, pp. e0241092, (2021) (PubMed).

Reid, Lowman, Pan, Tran, Warmoes, Ishak Gabra, Yang, Locasale, Kong: "IKKβ promotes metabolic adaptation to glutamine deprivation via phosphorylation and inhibition of PFKFB3." in: Genes & development, Vol. 30, Issue 16, pp. 1837-51, (2016) (PubMed).

Lee, Lee, Yun, Jang, Kang, Kim, Choi, Park: "Silver nanoparticles affect glucose metabolism in hepatoma cells through production of reactive oxygen species." in: International journal of nanomedicine, Vol. 11, pp. 55-68, (2016) (PubMed).

Lv, Zhang, Zhai, Qiu, Zhang, Yao, Zhang: "PFKFB3-mediated glycolysis is involved in reactive astrocyte proliferation after oxygen-glucose deprivation/reperfusion and is regulated by Cdh1." in: Neurochemistry international, Vol. 91, pp. 26-33, (2016) (PubMed).

Fu, Shi, Westaway, Jhamandas: "Bioenergetic mechanisms in astrocytes may contribute to amyloid plaque deposition and toxicity." in: The Journal of biological chemistry, Vol. 290, Issue 20, pp. 12504-13, (2015) (PubMed).

Ohmura, Hishiki, Yamamoto, Nakanishi, Kubo, Tsuchihashi, Tamada, Toue, Kabe, Saya, Suematsu: "Impacts of CD44 knockdown in cancer cells on tumor and host metabolic systems revealed by quantitative imaging mass spectrometry." in: Nitric oxide : biology and chemistry / official journal of the Nitric Oxide Society, Vol. 46, pp. 102-13, (2015) (PubMed).

Yamamoto, Takano, Ishiwata, Ohmura, Nagahata, Matsuura, Kamata, Sakamoto, Nakanishi, Kubo, Hishiki, Suematsu: "Reduced methylation of PFKFB3 in cancer cells shunts glucose towards the pentose phosphate pathway." in: Nature communications, Vol. 5, pp. 3480, (2014) (PubMed).

Bao, Mukai, Hishiki, Kubo, Ohmura, Sugiura, Matsuura, Nagahata, Hayakawa, Yamamoto, Fukuda, Saya, Suematsu, Minamishima: "Energy management by enhanced glycolysis in G1-phase in human colon cancer cells in vitro and in vivo." in: Molecular cancer research : MCR, Vol. 11, Issue 9, pp. 973-85, (2013) (PubMed).

De Bock, Georgiadou, Schoors, Kuchnio, Wong, Cantelmo, Quaegebeur, Ghesquière, Cauwenberghs, Eelen, Phng, Betz, Tembuyser, Brepoels, Welti, Geudens, Segura, Cruys, Bifari, Decimo, Blanco, Wyns et al.: "Role of PFKFB3-driven glycolysis in vessel sprouting. ..." in: Cell, Vol. 154, Issue 3, pp. 651-63, (2013) (PubMed).

Guo, Li, Xu, Halim, Thomas, Woo, Huo, Chen, Sturino, Wu: "Disruption of inducible 6-phosphofructo-2-kinase impairs the suppressive effect of PPARγ activation on diet-induced intestine inflammatory response." in: The Journal of nutritional biochemistry, Vol. 24, Issue 5, pp. 770-5, (2013) (PubMed).

Synonyme und alternative Namen zu PFKFB3

6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 (PFKFB3), 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 (Pfkfb3), 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 S homeolog (pfkfb3.S), 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 (pfkfb3), 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 (PTRG_09894), 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3 (Tsp_06710), E330010H22Rik, iPFK-2, IPFK2, PFK2, PFKFB3, uPFK-2, wu:fc31e01, zgc:73257

Bezeichner auf Proteinebene für PFKFB3

  • 6-phosphofructo-2-kinase/ fructose-2,6-bisphosphatase
  • 6-phosphofructo-2-kinase/fructose-2, 6-bisphosphatase
  • 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase 3
  • 6PF-2-K/Fru-2,6-P2ase 3
  • 6PF-2-K/Fru-2,6-P2ase brain/placenta-type isozyme
  • PFK/FBPase 3
  • fructose-6-phosphate,2-kinase/fructose-2, 6-bisphosphatase
  • iPFK-2
  • inducible 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase
  • renal carcinoma antigen NY-REN-56
  • 6PF-2-K/Fru-2,6-P2ASE brain-type isozyme
  • RB2K
  • inducible 6-phosphofructo-2-kinase
  • 6PF-2-K/Fru-2,6-P2ASE brain/placenta-type isozyme
  • 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3
  • 6-phosphofructo-2-kinase
  • fructose-2,6-biphosphatase 3
  • 6-phosphofructo-2-kinase/fructose-2,6-biphosphatase 3-like
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