Specifications
- HOST SPECIES: Rabbit
- SPECIES REACTIVITY: Human
- IMMUNOGEN: Antibody produced in rabbits immunized with a synthetic peptide corresponding a region of human PABPC4.
- CONJUGATE: Unconjugated
- TESTED APPLICATIONS: ELISA, WB
- APPLICATION NOTE: PABPC4 antibody can be used for detection of PABPC4 by ELISA at 1:62500. PABPC4 antibody can be used for detection of PABPC4 by western blot at 0.5 μg/mL, and HRP conjugated secondary antibody should be diluted 1:50,000 - 100,000.
- POSITIVE CONTROL 1: Cat. No. 1211 - HepG2 Cell Lysate
- PREDICTED MOLECULAR WEIGHT: 71 kDa
Properties
- PURIFICATION: Antibody is purified by peptide affinity chromatography method.
- CLONALITY: Polyclonal
- PHYSICAL STATE: Liquid
- BUFFER: Purified antibody supplied in 1x PBS buffer with 0.09% (w/v) sodium azide and 2% sucrose.
- CONCENTRATION: batch dependent
- STORAGE CONDITIONS: For short periods of storage (days) store at 4°C. For longer periods of storage, store PABPC4 antibody at -20°C. As with any antibody avoid repeat freeze-thaw cycles.
Additional Info
- NCBI OFFICIAL SYMBOL: PABPC4
- ADDITIONAL NAMES: PABPC4, APP-1, APP1, PABP4, iPABP
- Protein Accession Number: NP_003810
- PROTEIN GI NUMBER: 4504715
- NCBI GENE ID NUMBER: 8761
- USER NOTE: Optimal dilutions for each application to be determined by the researcher.
Background
- Poly (A)-binding proteins (PABPs) bind to the poly (A) tail present at the 3-prime ends of most eukaryotic mRNAs. PABPC4 or IPABP (inducible PABP) was isolated as an activation-induced T-cell mRNA encoding a protein. Activation of T cells increased PABPC4 mRNA levels in T cells approximately 5-fold. PABPC4 contains 4 RNA-binding domains and proline-rich C terminus. PABPC4 is localized primarily to the cytoplasm. It is suggested that PABPC4 might be necessary for regulation of stability of labile mRNA species in activated T cells. PABPC4 was also identified as an antigen, APP1 (activated-platelet protein-1), expressed on thrombin-activated rabbit platelets. PABPC4 may also be involved in the regulation of protein translation in platelets and megakaryocytes or may participate in the binding or stabilization of polyadenylates in platelet dense granules.Poly (A)-binding proteins (PABPs) bind to the poly (A) tail present at the 3-prime ends of most eukaryotic mRNAs. PABPC4 or IPABP (inducible PABP) was isolated as an activation-induced T-cell mRNA encoding a protein. Activation of T cells increased PABPC4 mRNA levels in T cells approximately 5-fold. PABPC4 contains 4 RNA-binding domains and proline-rich C terminus. PABPC4 is localized primarily to the cytoplasm. It is suggested that PABPC4 might be necessary for regulation of stability of labile mRNA species in activated T cells. PABPC4 was also identified as an antigen, APP1 (activated-platelet protein-1), expressed on thrombin-activated rabbit platelets. PABPC4 may also be involved in the regulation of protein translation in platelets and megakaryocytes or may participate in the binding or stabilization of polyadenylates in platelet dense granules.Poly (A)-binding proteins (PABPs) bind to the poly (A) tail present at the 3-prime ends of most eukaryotic mRNAs. PABPC4 or IPABP (inducible PABP) was isolated as an activation-induced T-cell mRNA encoding a protein. Activation of T cells increased PABPC4 mRNA levels in T cells approximately 5-fold. PABPC4 contains 4 RNA-binding domains and proline-rich C terminus. PABPC4 is localized primarily to the cytoplasm. It is suggested that PABPC4 might be necessary for regulation of stability of labile mRNA species in activated T cells. PABPC4 was also identified as an antigen, APP1 (activated-platelet protein-1), expressed on thrombin-activated rabbit platelets. PABPC4 may also be involved in the regulation of protein translation in platelets and megakaryocytes or may participate in the binding or stabilization of polyadenylates in platelet dense granules. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Entrez Gene record to access additional publications.
- 1: Ewing, R.M., Mol. Syst. Biol. 3, 89 (2007).
Disclaimer
- FOR RESEARCH USE ONLY
For additional information, visit ProSci's Terms & Conditions Page. - Disclaimer: This product is for research use only.
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