MAP3K4 Rabbit pAb- ABclonal,ABclonal,A16918

Reactivity

Human, Rat

Application

WB, IHC-P, ELISA

Platform ID

BAB832491001

ABclonal

Headquarters

500W Cummings Park, Ste. 6500 Woburn, MA 01801

Contact

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Product Specifications
Scientific Background

Specifications

NameMAP3K4 Rabbit pAb- ABclonal
Cat. No.A16918
RRID#N/A
IsotypeIgG
ReactivityHuman, Rat
ApplicationWB, IHC-P, ELISA
Working DilutionsWB:1:500 - 1:2000 | IHC-P:1:100 - 1:200 | ELISA:Recommended starting concentration is 1 μg/mL. Please optimize the concentration based on your specific assay requirements.
Molecular Weight170kDa
ImmunogenSynthetic peptide. This information is considered to be commercially sensitive.
PurityAffinity purification
Appearance/FormLiquid
StorageStore at -20℃. Avoid freeze / thaw cycles.; Buffer: PBS with 0.01% thimerosal, 50% glycerol, pH7.3.
Regulatory StatusResearch Use Only

Scientific Background

The central core of each mitogen-activated protein kinase (MAPK) pathway is a conserved cascade of 3 protein kinases: an activated MAPK kinase kinase (MAPKKK) phosphorylates and activates a specific MAPK kinase (MAPKK), which then activates a specific MAPK. While the ERK MAPKs are activated by mitogenic stimulation, the CSBP2 and JNK MAPKs are activated by environmental stresses such as osmotic shock, UV irradiation, wound stress, and inflammatory factors. This gene encodes a MAPKKK, the MEKK4 protein, also called MTK1. This protein contains a protein kinase catalytic domain at the C terminus. The N-terminal nonkinase domain may contain a regulatory domain. Expression of MEKK4 in mammalian cells activated the CSBP2 and JNK MAPK pathways, but not the ERK pathway. In vitro kinase studies indicated that recombinant MEKK4 can specifically phosphorylate and activate PRKMK6 and SERK1, MAPKKs that activate CSBP2 and JNK, respectively but cannot phosphorylate PRKMK1, an MAPKK that activates ERKs. MEKK4 is a major mediator of environmental stresses that activate the CSBP2 MAPK pathway, and a minor mediator of the JNK pathway. Several alternatively spliced transcripts encoding distinct isoforms have been described.

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