Biotin Anti-Transferrin Receptor antibody [MEM-75]
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(1 Publication)
Mouse Monoclonal Transferrin Receptor antibody - conjugated to Biotin. Suitable for ICC, IP, Flow Cyt and reacts with Human samples. Cited in 1 publication. Immunogen corresponding to Cell preparation containing TFRC protein.
View Alternative Names
CD71, Transferrin receptor protein 1, TR, TfR, TfR1, Trfr, T9, p90, TFRC
- Flow Cyt
Supplier Data
Flow Cytometry - Biotin Anti-Transferrin Receptor antibody [MEM-75] (AB28116)
Flow cytometry surface staining pattern of human PHA stimulated peripheral blood mononuclear cells stained using anti-ab28116 Biotin Anti-Transferrin Receptor antibody [MEM-75] (concentration in sample 0.6 μg/ml, Streptavidin APC).
- Flow Cyt
Supplier Data
Flow Cytometry - Biotin Anti-Transferrin Receptor antibody [MEM-75] (AB28116)
Separation of cells stained using ab28116 Biotin Anti-Transferrin Receptor antibody [MEM-75] antibody (concentration in sample 0.6 μg/ml, Streptavidin APC, red-filled) from cells unstained by primary antibody (Streptavidin APC, black-dashed) in flow cytometry analysis (surface staining).
Related conjugates and formulations (1)
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Anti-Transferrin Receptor antibody [MEM-75]
Reactivity data
Product details
ab28116 does not block binding of transferrin to the receptor.
The purified antibody is conjugated with Biotin-LC-NHS.
Properties and storage information
Form
Purification technique
Storage buffer
Shipped at conditions
Appropriate short-term storage duration
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
TfR plays a critical role in iron homeostasis by mediating the internalization of transferrin and release of iron in the endosomes. It operates as part of the transferrin-transferrin receptor complex facilitating iron assimilation necessary for DNA synthesis and cell growth. Iron release involves acidifying endosomes allowing transferrin to bind with specific cellular receptors including alternate forms like beta 2 transferrin. The process subsequently contributes to erythropoiesis and various metabolic processes by regulating essential cellular iron levels.
Pathways
The transferrin receptor is central to iron metabolism and the receptor-mediated endocytosis pathway. It tightly interacts with transferrin and intracellular pathways process the iron released from transferrin within endosomes. The receptor's role in this pathway involves a dynamic with other proteins such as HFE and hepcidin. These interactions help control systemic iron levels linking closely to the maintenance of erythroid cell health and proliferation.
Product protocols
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Target data
Publications (1)
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Biochemical and biophysical research communications 243:706-10 PubMed9500981
1998
Applications
Unspecified application
Species
Unspecified reactive species
Product promise
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