R Recombinant
Recombinant: Superior lot-to-lot consistency, continuous supply, and animal-free manufacturing.
Phospho-SUMO-1 (Ser2) (F9B6U) Rabbit mAb #88855
Filter:
- WB
- IP
Supporting Data
REACTIVITY | H M R Mk |
SENSITIVITY | Endogenous |
MW (kDa) | |
Source/Isotype | Rabbit IgG |
Application Key:
- WB-Western Blotting
- IP-Immunoprecipitation
Species Cross-Reactivity Key:
- H-Human
- M-Mouse
- R-Rat
- Mk-Monkey
Product Information
Product Usage Information
Application | Dilution |
---|---|
Western Blotting | 1:1000 |
Immunoprecipitation | 1:200 |
Storage
Supplied in 10 mM sodium HEPES (pH 7.5), 150 mM NaCl, 100 µg/mL BSA, 50% glycerol, and less than 0.02% sodium azide. Store at –20°C. Do not aliquot the antibody.
Protocol
Specificity / Sensitivity
Phospho-SUMO-1 (Ser2) (F9B6U) Rabbit mAb recognizes endogenous levels of SUMO-1 protein only when phosphorylated at Ser2. This antibody may recognize other proteins modified with phospho-SUMO-1 (Ser2) (e.g., SUMO-1-RanGAP at 80 kDa) and a non-phospho protein of unknown origin at 25 kDa.
Species Reactivity:
Human, Mouse, Rat, Monkey
Source / Purification
Monoclonal antibody is produced by immunizing animals with a synthetic phosphopeptide corresponding to residues surrounding Ser2 of human phospho-SUMO-1 protein.
Background
Small ubiquitin-related modifier 1, 2 and 3 (SUMO-1, -2 and -3) are members of the ubiquitin-like protein family (1). The covalent attachment of the SUMO-1, -2 or -3 (SUMOylation) to target proteins is analogous to ubiquitination. This post-translational modification is a reversible, multi-step process that is initiated by cleaving a precursor protein to a mature protein. Mature SUMO-1, -2 or -3 is then linked to the activating enzyme E1, conjugated to E2 and in conjunction with E3, SUMO-1, -2 or -3 is ligated to the target protein (2). Ubiquitin and the individual SUMO family members are all targeted to different proteins with diverse biological functions. Ubiquitin predominantly regulates degradation of its target (1). In contrast, SUMO-1 is conjugated to RanGAP, PML, p53 and IκB-α to regulate nuclear trafficking, formation of subnuclear structures, regulation of transcriptional activity and protein stability (3-7). SUMO-2/-3 forms poly-(SUMO) chains, is conjugated to topoisomerase II and APP, regulates chromosomal segregation and cellular responses to environmental stress, and plays a role in the progression of Alzheimer disease (8-11).
Serine 2 of SUMO-1 was shown to be phosphorylated in cells using mass spectrometry analyses (12). This phosphorylation site was also identified in yeast, Drosophila, and Arabidopsis, suggesting an evolutionary conserved function for this modification (12,13).
Serine 2 of SUMO-1 was shown to be phosphorylated in cells using mass spectrometry analyses (12). This phosphorylation site was also identified in yeast, Drosophila, and Arabidopsis, suggesting an evolutionary conserved function for this modification (12,13).
- Schwartz, D.C. and Hochstrasser, M. (2003) Trends Biochem. Sci. 28, 321-8.
- Kim, K.I. et al. (2002) J. Cell Physiol. 191, 257-68.
- Matunis, M.J. et al. (1996) J. Cell Biol. 135, 1457-70.
- Duprez, E. et al. (1999) J. Cell Sci. 112, 381-93.
- Gostissa, M. et al. (1999) EMBO J. 18, 6462-74.
- Rodriguez, M.S. et al. (1999) EMBO J. 18, 6455-61.
- Desterro, J.M. et al. (1998) Mol. Cell 2, 233-9.
- Tatham, M.H. et al. (2001) J. Biol. Chem. 276, 35368-74.
- Azuma, Y. et al. (2003) J. Cell Biol. 163, 477-87.
- Li, Y. et al. (2003) Proc. Natl. Acad. Sci. USA 100, 259-64.
- Saitoh, H. and Hinchey, J. (2000) J. Biol. Chem. 275, 6252-8.
- Matic, I. et al. (2008) J Proteome Res 7, 4050-7.
- Roitinger, E. et al. (2015) Mol Cell Proteomics 14, 556-71.
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