FITC Anti-Transferrin Receptor antibody [YTA 74.4],Abcam,AB33996

ab33996 stains dividing cells, and can be used to distinguish resting from activated T cells.

Host

Rat

Reactivity

Mouse

Application

Flow Cyt

Conjugate

FITC

Platform ID

BAB682584140

Abcam

Headquarters

Discovery Drive Cambridge Biomedical Campus Cambridge CB2 0AX UK

Contact

Tel: +44 (0)1223 696000
Fax: +44 (0)1223 215 215

Product Specifications
Scientific Background

Specifications

NameFITC Anti-Transferrin Receptor antibody [YTA 74.4]
Cat. No.AB33996
HostRat
IsotypeIgG2a
ReactivityMouse
ConjugationFITC
ApplicationFlow Cyt
ClonalityMonoclonal
Clone NumberYTA 74.4
Concentration0.1 mg/mL Batch dependent concentration
ImmunogenCell preparation containing Tfrc protein. The exact immunogen used to generate this antibody is proprietary information.
PurityAffinity purification Protein A
Appearance/FormLiquid
ShippingBlue Ice
FormulationpH: 7.4 Preservative: 0.09% Sodium azide Constituents: PBS, 1% BSA
Storage+4°C
Regulatory StatusResearch Use Only

Scientific Background

Target data Cellular uptake of iron occurs via receptor-mediated endocytosis of ligand-occupied transferrin receptor into specialized endosomes (By similarity). Endosomal acidification leads to iron release. The apotransferrin-receptor complex is then recycled to the cell surface with a return to neutral pH and the concomitant loss of affinity of apotransferrin for its receptor. Transferrin receptor is necessary for development of erythrocytes and the nervous system (By similarity). Upon stimulation, positively regulates T and B cell proliferation through iron uptake (PubMed : 26642240). Acts as a lipid sensor that regulates mitochondrial fusion by regulating activation of the JNK pathway (By similarity). When dietary levels of stearate (C18 : 0) are low, promotes activation of the JNK pathway, resulting in HUWE1-mediated ubiquitination and subsequent degradation of the mitofusin MFN2 and inhibition of mitochondrial fusion (By similarity). When dietary levels of stearate (C18 : 0) are high, TFRC stearoylation inhibits activation of the JNK pathway and thus degradation of the mitofusin MFN2 (By similarity). Mediates uptake of NICOL1 into fibroblasts where it may regulate extracellular matrix production (PubMed : 38625739). See full target information Tfrc

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