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Phospho-p38 alpha (T180/Y182) DuoSet IC ELISA, 2 Plate

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Product Details

Summary
Reactivity Hu, Mu, RtSpecies Glossary
Applications ELISA
Conjugate
Biotin

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Catalog# & Formulation Size Price
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Phospho-p38 alpha (T180/Y182) DuoSet IC ELISA, 2 Plate Summary

Modification
p Thr180, p Tyr182
Source
N/A
Assay Type
Solid Phase Sandwich ELISA
Inter-Assay
See PDF Datasheet for details
Intra-Assay
See PDF Datasheet for details
Spike Recovery
See PDF Datasheet for details
Sample Volume
See PDF Datasheet for details
Gene
MAPK14

Applications/Dilutions

Dilutions
  • ELISA
Application Notes
No significant interference observed with available related molecules.
Publications
Read Publications using DYC869B-2.

Packaging, Storage & Formulations

Storage
Store the unopened product at 2 - 8 °C. Do not use past expiration date.

Notes

This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.

Alternate Names for Phospho-p38 alpha (T180/Y182) DuoSet IC ELISA, 2 Plate

  • CSBP;CSBP1;CSBP2;CSPB1;EXIP;MAPK14;Mitogen-activated protein kinase;Mitogen-activated protein kinase 14;Mxi2;p38;p38ALPHA;PRKM14;PRKM15;RK;SAPK2A
  • MAPK14
  • p38 alpha
  • SAPK2a

Background

The p38 Mitogen-activated Protein Kinases (MAPKs) are a family of four related Ser/Thr kinases activated by proinflammatory cytokines and environmental stresses. All four p38 family members, alpha, beta, gamma, and delta, are phosphorylated by MKK3 and/or MKK6 at dual Thr and Tyr positions within the phosphoacceptor sequence Thr-Gly-Tyr. Once activated, p38 phosphorylates a number of targets, including the nuclear transcription factors ATF2 and Max.

The most frequently analyzed family member, p38 alpha, also known as SAPK2a and MAPK14, was initially purified as a kinase critical to the signaling cascade linking IL-1 to MAPKAPK-2 and the small heat shock protein HSP27. Ubiquitously expressed, p38 alpha is dually phosphorylated by MKK3 and MKK6 at Thr180 and Tyr182. Once activated, p38 alpha phosphorylates a number of targets, including the cytoplasmic kinases MNK 4 and PRAK5 and the nuclear transcription factors ATF2 1 and STAT1. Several promising compounds that inhibit p38 alpha are being investigated as potential therapies for arthritic and inflammatory diseases.

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Publications for p38 alpha (DYC869B-2)(14)

We have publications tested in 3 confirmed species: Human, Mouse, Rabbit.


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Human
(9)
Mouse
(4)
Rabbit
(1)
All Species
Showing Publications 1 - 10 of 14. Show All 14 Publications.
Publications using DYC869B-2 Applications Species
G Feigelman, E Simanovich, P Brockmeyer, MA Rahat Knocking-Down CD147/EMMPRIN Expression in CT26 Colon Carcinoma Forces the Cells into Cellular and Angiogenic Dormancy That Can Be Reversed by Interactions with Macrophages Biomedicines, 2023-03-02;11(3):. 2023-03-02 [PMID: 36979746] (Mouse) Mouse
J Knobloch, D Jungck, J Kronsbein, E Stoelben, K Ito, A Koch LABAs and p38MAPK Inhibitors Reverse the Corticosteroid-Insensitivity of IL-8 in Airway Smooth Muscle Cells of COPD J Clin Med, 2019-11-22;8(12):. 2019-11-22 [PMID: 31766770] (Human) Human
Q Ma, Q Liu, L Yuan, Y Zhuang Protective Effects of LSGYGP from Fish Skin Gelatin Hydrolysates on UVB-Induced MEFs by Regulation of Oxidative Stress and Matrix Metalloproteinase Activity Nutrients, 2018-03-28;10(4):. 2018-03-28 [PMID: 29597313] (Mouse) Mouse
Ghezali L, Leger D, Limami Y, Cook-Moreau J, Beneytout J, Liagre B Cyclopamine and jervine induce COX-2 overexpression in human erythroleukemia cells but only cyclopamine has a pro-apoptotic effect. Exp Cell Res, 2013-01-25;319(7):1043-53. 2013-01-25 [PMID: 23357584] (Human) Human
Holenya P, Kitanovic I, Heigwer F, Wolfl S Microarray-based kinetic colorimetric detection for quantitative multiplex protein phosphorylation analysis. Proteomics, 2011-04-18;11(10):2129-33. 2011-04-18 [PMID: 21500346] (Human) Human
Gouwy M, Struyf S, Berghmans N, Vanormelingen C, Schols D, Van Damme J CXCR4 and CCR5 ligands cooperate in monocyte and lymphocyte migration and in inhibition of dual-tropic (R5/X4) HIV-1 infection. Eur. J. Immunol., 2011-03-07;41(4):963-73. 2011-03-07 [PMID: 21381021] (Human) Human
Yeh CC, Li H, Malhotra D, Turcato S, Nicholas S, Tu R, Zhu BQ, Cha J, Swigart PM, Myagmar BE, Baker AJ, Simpson PC, Mann MJ Distinctive ERK and p38 signaling in remote and infarcted myocardium during post-MI remodeling in the mouse. J. Cell. Biochem., 2010-04-15;109(6):1185-91. 2010-04-15 [PMID: 20186881] (Mouse) Mouse
Montalban AG, Boman E, Chang CD, Ceide SC, Dahl R, Dalesandro D, Delaet NG, Erb E, Ernst J, Gibbs A, Kahl J, Kessler L, Lundstrom J, Miller S, Nakanishi H, Roberts E, Saiah E, Sullivan R, Wang Z, Larson CJ KR-003048, a potent, orally active inhibitor of p38 mitogen-activated protein kinase. Eur. J. Pharmacol., 2010-02-02;632(1):93-102. 2010-02-02 [PMID: 20132813] (Human) Human
Hsieh CH, Nickel EA, Chen J, Schwacha MG, Choudhry MA, Bland KI, Chaudry IH Mechanism of the salutary effects of estrogen on kupffer cell phagocytic capacity following trauma-hemorrhage: pivotal role of Akt activation. J. Immunol., 2009-04-01;182(7):4406-14. 2009-04-01 [PMID: 19299741] (Mouse) Mouse
Muselet-Charlier C, Roque T, Boncoeur E, Chadelat K, Clement A, Jacquot J, Tabary O Enhanced IL-1beta-induced IL-8 production in cystic fibrosis lung epithelial cells is dependent of both mitogen-activated protein kinases and NF-kappaB signaling. Biochem. Biophys. Res. Commun., 2007-04-02;357(2):402-7. 2007-04-02 [PMID: 17420005] (Human) Human
Show All 14 Publications.

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Bioinformatics

Gene Symbol MAPK14