Transferrin Receptor 2 Rabbit Recombinant mAb

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  • WB
  • IHC
规格 价格 库存 购买数量
20ul RMB 447.41 现货
100ul RMB 1500.9 现货
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400-668-6834

info@selleck.cn

 

使用信息

抗体应用 WB, IHC,ELISA
稀释比例
WB IHC
1:1000 1:50
反应性 Human
MW (kDa) 100kDa
抗体类型 Rabbit
浓度 1mg/ml
储存液配方 10 mM sodium HEPES (pH 7.5), 150 mM NaCl, 100 µg/ml BSA, 50% glycerol and less than 0.02% sodium azide.
储存条件
(自收到货起)
Store at –20°C.

Datasheet & SDS

生物描述

特异性 Transferrin Receptor 2 Rabbit Recombinant mAb detects endogenous levels of total Transferrin Receptor 2
背景 The effectiveness of hematopoiesis depends on hematopoietic cell activity as well as on the presence of iron. Iron uptake is regulated by some of the members of the transferrin family of iron-containing proteins -- transferrin and its receptors which assigns them a key regulatory role in hematopoiesis. Transferrins are expressed mainly in the liver, but small amounts arise also in the bone marrow, pancreas, testes, brain, spleen and kidneys. There are three types of transferrin receptors -- transferrin receptor 1 (TfR1), transferrin receptor 2 (TfR2) and soluble transferrin receptor (sTfR). Cell surface TfR expression and concentration reflect iron requirements of the cells and they may be a useful marker for quantitative evaluation of the erythroid lineage, erythropoiesis and iron deficiency. Erythropoietin (Epo) is required for erythroid progenitor differentiation. Type 2 transferrin receptor (TfR2) is a component of the EpoR complex corresponding to proteins. It is involved in iron metabolism by regulating hepcidin production in liver cells. TfR2 and EpoR are synchronously coexpressed during the differentiation of erythroid progenitors. TfR2 associates with EpoR in the endoplasmic reticulum and is required for the efficient transport of this receptor to the cell surface. TfR2 expression is tissue-restricted with high expression in the liver where it plays a key role in iron metabolism regulation. TfR2 contributes to the adaptation of hepcidin production to the needs of the body by sensing the circulating iron bound to transferrin. TfR2 and TfR1 differ in their expression during erythroid differentiation. TfR2 was reduced while TfR1 levels increased with differentiation in MEL cells and in human erythroid cells having the highest TfR2 expression in erythroblasts. TfR2 mRNA expression is cell cycle dependent. Inactivation of TfR2 leads to the development of hemochromatosis due to inappropriate hepcidin levels relative to body iron. TfR2 is suggested to be required forterminal erythroblast differentiation and play a key regulatory role of TfR2 in erythropoiesis.

实验方法

WB

Western Blotting

Sample preparation

1. Aspirate media from cultures and Wash the cells with 1X PBS.
2. Lyse cells by adding 1X SDS sample buffer and transfer the extract to a microcentrifuge tube. Keep onice.
3. Sonicate for 10–15 sec to complete cell lysis and shear DNA.
4. Heat a 20 µl sample to 95–100°C for 5 min, then cool on ice.
5. Centrifuge for 5 min (with Microcentrifuge).
6. Load appropriate volumes of samples onto SDS-PAGE gel (loading quantity of protein sample depends on the concentration of extracted proteins).
NOTE: At the same time, please load the pre-stained molecular weight markers to determine molecular weights and verify electrotransfer.
7. Electrotransfer to nitrocellulose/PVDF membrane.

Membrane Blocking and Antibody Incubations

a. Blocking

1. (Optional) After transfer, wash the transferred membrane with TBS for 5 min at room temperature.
2. Incubate the membrane in the blocking buffer for 1 hr at room temperature.
3. Wash three times for 5 min each with TBST.

b. Antibodies Incubation

1. Incubate membrane and primary antibody (at the appropriate dilution and diluent recommended) in a primary antibody dilution buffer with gentle agitation overnight at 4°C.
2. Wash three times for 5 min each with TBST.
3. Incubate membrane with an appropriate second antibodydissolved in the blocking buffer with gentle agitation for 1 hr at room temperature.
4. Wash three times for 5 min each with TBST.
5. Proceed with detection.

Detection of Proteins

1. After antibodies incubation, Wash membrane three times for 5 minutes in TBST.
2. PrepareECL Reagent (or other chromogenic agents/substrate according to your second antibody). Mix well.
3. Incubate substrate with membrane for 1 minute, remove excess solution (membrane remains wet), wrap in plastic and expose to X-ray film.

IHC

Immunohistochemistry (Paraffin)

Deparaffinization/Rehydration

NOTE: Do not allow slides to dry at any time during this procedure.

1. Deparaffinize/hydrate sections:

1. Incubate sections in three washes of xylene for 5 min each.
2. Incubate sections in two washes of 100% ethanol for 10 min each.
3. Incubate sections in two washes of 95% ethanol for 10 min each.

2. Wash sections two times in dH2O for 5 min each.

Antigen retrieval

For Citrate: Heat slides in a microwave submersed in 1X citrate unmasking solution until boiling is initiated; continue with 10 min at a sub-boiling temperature (95°-98°C). Cool slides on bench top for 30 min.

Staining

1. Wash sections in dH2O three times for 5 min each.
2. Incubate sections in 3% hydrogen peroxide for 10 min.
3. Wash sections in dH2O two times for 5 min each.
4. Wash sections in wash buffer for 5 min.
5. Block each section with 100–400 µl of blocking solution for 1 hr at room temperature.
6. Remove blocking solution and add 100–400 µl primary antibody diluent in to each section. Incubate overnight at 4°C.
7. Remove antibody solution and wash sections with wash buffer three times for 5 min each.
8. Cover section with 1–3 drops HRPas needed. Incubate in a humidified chamber for 30 min at room temperature.
9. Wash sections three times with wash buffer for 5 min each.
10. Add DAB Chromogen Concentrate to DAB Diluent and mix well before use.
11. Apply 100–400 µl DAB to each section and monitor closely. 1–10 min generally provides an acceptable staining intensity.
12. Immerse slides in dH2O.
13. If desired, counterstain sections with hematoxylin.
14. Wash sections in dH2O two times for 5 min each.
15. Dehydrate sections:
1. Incubate sections in 95% ethanol two times for 10 sec each.
2. Repeat in 100% ethanol, incubating sections two times for 10 sec each.
3. Repeat in xylene, incubating sections two times for 10 sec each.
16. Mount sections with coverslips and mounting medium.

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