Product Pathways - MAPK Signaling
p38α MAPK (L53F8) Mouse mAb #9228
PhosphoSitePlus® protein, site, and accession data: p38-alpha
| Applications | Reactivity | Sensitivity | MW (kDa) | Isotype |
|---|---|---|---|---|
| W IF-IC F | H M R Mk Pg Sc | Endogenous | 40 | Mouse IgG1 |
Applications Key:
W=Western Blotting
IF-IC=Immunofluorescence (Immunocytochemistry)
F=Flow Cytometry
Reactivity Key:
H=Human
M=Mouse
R=Rat
Mk=Monkey
Pg=Pig
Sc=S. cerevisiae
Species cross-reactivity is determined by western blot. Species enclosed in parentheses are predicted to react based on 100% sequence homology.
Protocols
- 9228:
- Flow, Immunofluorescence, Western Blotting
Specificity / Sensitivity
p38α MAP Kinase (L53F8) Mouse mAb detects endogenous levels of total p38α MAPK. This antibody does not cross-react with either JNK/SAPK or p42/44 MAPK or other isoforms of p38.
Source / Purification
Monoclonal antibody is produced by immunizing animals with a recombinant p38 MAPK protein.
Western Blotting
Western blot analysis of extracts from HeLa, NIH/3T3 and C6 cells, using p38α MAPK (L53F8) Mouse mAb.
Flow Cytometry
Flow cytometric analysis of Jurkat cells, using p38α MAPK (L53F8) Mouse mAb (blue) compared to a nonspecifc negative control antibody (red).
IF-IC
Confocal immunofluorescent analysis of HeLa cells, untreated (left) or anisomycin-treated (right), using p38-alpha MAPK (L53F8) Mouse mAb (green). Actin filaments have been labeled with Alexa Fluor® 555 phalloidin (red).
Background
p38 MAP kinase (MAPK), also called RK (1) or CSBP (2), is the mammalian orthologue of the yeast HOG kinase that participates in a signaling cascade controlling cellular responses to cytokines and stress (1-4). Four isoforms of p38 MAPK, p38α, β, γ (also known as Erk6 or SAPK3), and δ (also known as SAPK4) have been identified. Similar to the SAPK/JNK pathway, p38 MAPK is activated by a variety of cellular stresses including osmotic shock, inflammatory cytokines, lipopolysaccharide (LPS), UV light, and growth factors (1-5). MKK3, MKK6, and SEK activate p38 MAPK by phosphorylation at Thr180 and Tyr182. Activated p38 MAPK has been shown to phosphorylate and activate MAPKAP kinase 2 (3) and to phosphorylate the transcription factors ATF-2 (5), Max (6), and MEF2 (5-8).SB203580 (4-(4-fluorophenyl)-2-(4-methylsulfinylphenyl)-5-(4-pyridyl)-imidazole) is a selective inhibitor of p38 MAPK. This compound inhibits the activation of MAPKAPK-2 by p38 MAPK and subsequent phosphorylation of HSP27 (9). SB203580 inhibits p38 MAPK catalytic activity by binding to the ATP-binding pocket, but does not inhibit phosphorylation of p38 MAPK by upstream kinases (10).
- Rouse, J. et al. (1994) Cell 78, 1027-1037.
- Han, J. et al. (1994) Science 265, 808-811.
- Lee, J.C. et al. (1994) Nature 372, 739-746.
- Freshney, N.W. et al. (1994) Cell 78, 1039-1049.
- Raingeaud, J. et al. (1995) J. Biol. Chem. 270, 7420-7426.
- Zervos, A.S. et al. (1995) Proc. Natl. Acad. Sci. USA 92, 10531-10534.
- Zhao, M. et al. (1999) Mol. Cell. Biol. 19, 21-30.
- Yang, S.H. et al. (1999) Mol. Cell. Biol. 19, 4028-4038.
- Cuenda, A. et al. (1995) FEBS Lett 364, 229-33.
- Kumar, S. et al. (1999) Biochem Biophys Res Commun 263, 825-31.
Application References
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For Research Use Only. Not For Use In Diagnostic Procedures.