Anti-MEK1 (phospho T386) antibody,Abcam,AB254096

Host

Rabbit

Reactivity

Human

Application

WB

Platform ID

BAB319879471

Abcam

Headquarters

Discovery Drive Cambridge Biomedical Campus Cambridge CB2 0AX UK

Contact

Tel: +44 (0)1223 696000
Fax: +44 (0)1223 215 215

Product Specifications
Scientific Background

Specifications

NameAnti-MEK1 (phospho T386) antibody
Cat. No.AB254096
HostRabbit
IsotypeIgG
ReactivityHuman
ApplicationWB
ClonalityPolyclonal
Concentration1 mg/mL Batch dependent concentration
ImmunogenSynthetic Peptide within Human MAP2K1 phospho T386. The exact immunogen used to generate this antibody is proprietary information.
PurityAffinity purification
Appearance/FormLiquid
ShippingBlue Ice
FormulationpH: 7.5 Constituents: HEPES, 50% Glycerol (glycerin, glycerine), 10% BSA, 0.87% Sodium chloride
Storage-20°C
Regulatory StatusResearch Use Only

Scientific Background

Target data Dual specificity protein kinase which acts as an essential component of the MAP kinase signal transduction pathway. Binding of extracellular ligands such as growth factors, cytokines and hormones to their cell-surface receptors activates RAS and this initiates RAF1 activation. RAF1 then further activates the dual-specificity protein kinases MAP2K1/MEK1 and MAP2K2/MEK2. Both MAP2K1/MEK1 and MAP2K2/MEK2 function specifically in the MAPK/ERK cascade, and catalyze the concomitant phosphorylation of a threonine and a tyrosine residue in a Thr-Glu-Tyr sequence located in the extracellular signal-regulated kinases MAPK3/ERK1 and MAPK1/ERK2, leading to their activation and further transduction of the signal within the MAPK/ERK cascade. Activates BRAF in a KSR1 or KSR2-dependent manner; by binding to KSR1 or KSR2 releases the inhibitory intramolecular interaction between KSR1 or KSR2 protein kinase and N-terminal domains which promotes KSR1 or KSR2-BRAF dimerization and BRAF activation (PubMed : 29433126). Depending on the cellular context, this pathway mediates diverse biological functions such as cell growth, adhesion, survival and differentiation, predominantly through the regulation of transcription, metabolism and cytoskeletal rearrangements. One target of the MAPK/ERK cascade is peroxisome proliferator-activated receptor gamma (PPARG), a nuclear receptor that promotes differentiation and apoptosis. MAP2K1/MEK1 has been shown to export PPARG from the nucleus. The MAPK/ERK cascade is also involved in the regulation of endosomal dynamics, including lysosome processing and endosome cycling through the perinuclear recycling compartment (PNRC), as well as in the fragmentation of the Golgi apparatus during mitosis. See full target information MAP2K1 phospho T386

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