SAB4700518
Monoclonal Anti-CD71-FITC antibody produced in mouse
clone MEM-75, purified immunoglobulin, buffered aqueous solution
Sinonimo/i:
Anti-TFRC, Anti-Transferrin Receptor
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About This Item
Codice UNSPSC:
12352203
NACRES:
NA.41
Prodotti consigliati
Origine biologica
mouse
Livello qualitativo
Coniugato
FITC conjugate
Forma dell’anticorpo
purified immunoglobulin
Tipo di anticorpo
primary antibodies
Clone
MEM-75, monoclonal
Stato
buffered aqueous solution
Reattività contro le specie
human
tecniche
flow cytometry: suitable
Isotipo
IgG1
N° accesso NCBI
N° accesso UniProt
Condizioni di spedizione
wet ice
Temperatura di conservazione
2-8°C
modifica post-traduzionali bersaglio
unmodified
Informazioni sul gene
human ... TFRC(7037)
Descrizione generale
Transferrin receptor (TFRC, p90) is also known as cluster of differentiation 71 (CD71). The antibody MEM-75 reacts with CD71 antigen (transferrin receptor), a 95 kDa type II homodimeric transmembrane glycoprotein expressed on activated B and T lymphocytes, macrophages and erythroid precursors; it is lost on resting blood leukocytes. In human chromosome, the gene TFRC is localized on 3q29.
Immunogeno
NALM-6 human pre-B cell line
Applicazioni
The reagent is designed for Flow Cytometry analysis of human blood cells using 20 μL reagent / 100 μL of whole blood or 1e6 cells in a suspension. The content of a vial (2 mL) is sufficient for 100 tests.
Azioni biochim/fisiol
Transferrin receptor (TFRC, CD71) facilitates the uptake of iron bound to transferrin (Tf) through clathrin-mediated endocytosis. TFRC interacts with iron-bound holo-transferrin at pH 7.4 and does not interact apo-transferrin. TFRC also binds with H-ferritin. Expression level of TFRC is regulated stringently by intracellular iron levels. The expression is higher in erythroblasts owing to haemoglobin synthesis. The expression is also higher in cancer cells, osteoclasts and activated lymphocytes, where iron requirement is high. Hypoxia and iron deficiency also increases TFRC expression. Recycling of Tf and TFRC is essential for the uptake of iron from the serum. Mutations in the internalization motif of TFRC leads to impaired endocytosis and consequently congenital/combined immunodeficiency. Improper palmitoylation of TFRC is connected to neurodegeneration with brain iron accumulation. Upregulation of TFRC is implicated in progression of pancreatic cancer, adult T-cell leukemia/lymphoma (ATLL), and cholangiocarcinoma.
Caratteristiche e vantaggi
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Stato fisico
Solution in phosphate buffered saline containing 15 mM sodium azide and 0.2% high-grade protease free BSA as a stabilizing agent.
Esclusione di responsabilità
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
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Codice della classe di stoccaggio
10 - Combustible liquids
Classe di pericolosità dell'acqua (WGK)
WGK 2
Punto d’infiammabilità (°F)
Not applicable
Punto d’infiammabilità (°C)
Not applicable
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I documenti relativi ai prodotti acquistati recentemente sono disponibili nell’Archivio dei documenti.
Development of a complete human igg monoclonal antibody to transferrin receptor 1 targeted for adult T-cell leukaemia/lymphoma
Shimosaki S, et al.
Biochemical and Biophysical Research Communications, 485(1), 144-151 (2017)
Transferrin and transferrin receptors update
Kawabata H
Free Radical Biology & Medicine (2018)
Upregulation of transferrin receptor-1 induces cholangiocarcinoma progression via induction of labile iron pool
Jamnongkan W, et al.
Tumour Biology : the Journal of the International Society For Oncodevelopmental Biology and Medicine, 39(7), 1-10 (2017)
A missense mutation in TFRC, encoding transferrin receptor 1, causes combined immunodeficiency
Jabara HF, et al.
Nature Genetics, 48(1), 74-74 (2016)
Impaired transferrin receptor palmitoylation and recycling in neurodegeneration with brain iron accumulation
Drecourt A, et al.
American Journal of Human Genetics, 102(2), 266-277 (2018)
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