Pan-branch Ubiquitin TUBE-UBQLN1 Assay Kit (Anti-rabbit IgG Secondary) #17452
- ELISA+
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Product Specifications
| REACTIVITY | All |
Application Key:
- ELISA+-ELISA and/or ELISA-like Assays
Species Cross-Reactivity Key:
- All-All Species Expected
Product Information
Product Description
Tandem-repeated ubiquitin-binding entities (TUBEs) were designed using four tandem ubiquitin-associated (UBA) domains from ubiquilin 1 (UBQLN1), allowing it to bind to proteins containing polyubiquitinated chains. The Pan-branch Ubiquitin TUBE-UBQLN1 Assay Kit (Anti-rabbit IgG Secondary) provides the reagents to run a solid phase sandwich enzyme-linked immunosorbent assay (ELISA) that can detect ubiquitination of a protein of interest (detection antibody to specific target protein not included in assay kit). Pan-branch Ubiquitin TUBE-UBQLN1 has been coated onto the microwells. After incubation with cell lysates, ubiquitinated proteins are captured by the coated TUBE-UBQLN1. Following extensive washing, a user-provided detection antibody (rabbit IgG) that binds to a target of interest is added to detect the captured ubiquitinated protein. Anti-rabbit IgG, HRP-linked Antibody is then used to recognize the bound detection antibody. HRP substrate, TMB, is added to develop color. The magnitude of the absorbance for this developed color is proportional to the quantity of the ubiquitinated target protein.
User must supply a detection antibody suitable for use in sandwich ELISAs that recognizes the target protein whose ubiquitination is being tested. Pan-branch Ubiquitin TUBE-UBQLN1 Assay Kit (Anti-rabbit IgG Secondary) #17452 requires a rabbit detection antibody. If using a mouse detection antibody, Pan-branch Ubiquitin TUBE-UBQLN1 Assay Kit (Anti-mouse IgG Secondary) #35030 should be used. Click here for more information regarding Cell Signaling Technology® ELISA-validated antibodies.
*Reagents in this kit are custom formulations specific to kit.
Protocol
Specificity / Sensitivity
Species Reactivity:
Background
Substrate proteins are linked to ubiquitin using seven distinct ubiquitin lysine residues (Lys6, Lys11, Lys27, Lys29, Lys33, Lys48, and Lys63). Formation of a polyubiquitin chain occurs when a lysine residue of ubiquitin is linked to the carboxy-terminal glycine of another ubiquitin. Proteins polyubiquitinated at specific lysine residues display a tendency to be targeted for different processes; K48-linked polyubiquitin chains mainly target proteins for proteasomal degradation, while K63-linked polyubiquitin chains regulate protein function, subcellular localization, or protein-protein interactions (8). K63-linked polyubiquitin chains exert nonproteolytic functions in vivo, such as protein trafficking, kinase/phosphatase activation, and DNA damage control, all of which might be important in regulation of cancer survival and development (9,10).
Ubiquitin-associated (UBA) domains are protein regions that interact with ubiquitin. Tandem-repeated ubiquitin-binding entities (TUBEs) were designed by using four tandem UBA domains, based on the theory that tetraubiquitin chains are a minimum requirement for efficient proteasomal degradation (11). TUBEs designed with UBA domains from UBQLN1 and RAD23A bind to K48- and K63-linked tetraubiquitin chains and can be used to efficiently purify ubiquitylated proteins from cell extracts (12).
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- Hochstrasser, M. (2000) Nat Cell Biol 2, E153-7.
- Hochstrasser, M. (2000) Science 289, 563-4.
- Bernardi, R. et al. (2000) Oncogene 19, 2447-54.
- Aberle, H. et al. (1997) EMBO J 16, 3797-804.
- Salomoni, P. and Pandolfi, P.P. (2002) Nat Cell Biol 4, E152-3.
- Jesenberger, V. and Jentsch, S. (2002) Nat Rev Mol Cell Biol 3, 112-21.
- Komander, D. (2009) Biochem Soc Trans 37, 937-53.
- Chen, Z.J. and Sun, L.J. (2009) Mol Cell 33, 275-86.
- Yang, W.L. et al. (2010) Oncogene 29, 4493-503.
- Thrower, J.S. et al. (2000) EMBO J 19, 94-102.
- Hjerpe, R. et al. (2009) EMBO Rep 10, 1250-8.
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