Iron Regulatory Protein (IRP-2) (Not for Export EU)
Product Sizes
100ul
£704.00
I8615-03-100UL
About this Product
- SKU:
- I8615-03
- Clonality:
- Polyclonal
- Extra Details:
- Elemental iron is required for a variety of normal cellular functions and vital for proper growth and development. However, natural iron is quite insoluble and excess iron is harmful, since it can catalyze the formation of potentially damaging reactive oxygen species. Humans also have very limited capacity to excrete iron. Therefore, cells have developed mechanisms to improve solubility of iron and to control intracellular iron levels at the point of absorption in the intestine and other tissue. Several proteins including Ferritin, transferrin (Tf), transferrin receptors (TfRs), and iron regulatory proteins (IRPs), iron transporter (NRMAP2/DMT1/DCT1) etc play a key role in iron metabolism. Some genes involved in iron-metabolism are associated with genetic disorders such as Friedreich's Ataxia (Frataxin), genetic hemochromatosis (HFE), and Sex-linked anemia (Hephaestin). Iron regulatory proteins (IRP-1 and IRP-2) are cytoplasmic mRNA-binding proteins that control intracellular iron levels by regulating the translation of ferritin, Tfrs, and other proteins congaing iron-responsive element (IRE) located at the 5'-UTR. IRP binds to IREs with high affinity in situation of iron starvation. Binding of IRP to IRE of ferritin represses its transcription. However, when cells are iron replete, IRPs lose their capacity to bind IREs, allowing efficient translation of ferritin and reducing Tfr mRNA half-life. Although IRP1 and IRP-2 share significant protein sequence homology, they differ in tissue distribution and mode of regulation. IRP-1, also known as IRE-BP-1/aconitase/citrate hydrolyase/ferritin repressor protein, (mouse/rat/human 889aa, chromosome 9, ~98kD) also posses aconitase activity and highly homologous with mitochondrial aconitase. IRP-1 is more abundant than IRP-2 and it is widely expressed. IRP-2/IRE-BP2 (rat/human 963aa) is relatively less abundant than IRP-1 andl acks aconitase activity. It has a unique 73aa insertion in the N-terminus. In the presence of high iron levels IRP-2 is rapidly targeted to proteasome-mediated degradation. Although, both IRPs bind the consensus IREs, it is also shown that IRP-2 can recognize an exclusive IRE subset. Applications: Suitable for use in ELISA. Western Blot, though not tested, may potentially be used as an application. Other applications not tested. Recommended Dilution: Western Blot: 1:1000-1:5000 ELISA: ~1:100,000 using 50-100ng control peptide/well. Optimal dilutions to be determined by the researcher. Control peptide: I8670-21: Iron Regulatory Protein, Rat (IRP-2) Storage and Stability: May be stored at 4°C for short-term only. For long-term storage, store at -20°C. Aliquots are stable for at least 12 months at -20°C. For maximum recovery of product, centrifuge the original vial after thawing and prior to removing the cap. Further dilutions can be made in assay buffer.
- Host:
- Rabbit
- Immunogen:
- Synthetic peptide consisting of 20aa sequence within the N-terminus of rat/mouse/human IRP-2 (KLH coupled).
- Isotype:
- IgG
- Physical State:
- Supplied as a liquid, serum, 0.05% sodium azide, 40% glycerol.
- Purity:
- Serum
- Shipping Conditions:
- Blue Ice
- Specificity:
- Recognizes Iron Regulatory Protein (IRP-2). Does not crossreact with IRP-1. Species Crossreactivity: Mouse, rat and human.
- Source:
- rat
- Storage Conditions:
- 4[o]C (-20[o]C Glycerol)
- Supplier:
- United States Biological
- Type:
- Antibodies:Polyclonal Antibody
