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          • Primary Antibodies ›
          • ERK1/2 Antibodies

          Proteintech

          Phospho-ERK1/2 (Thr202, Tyr204) Recombinant Rabbit Monoclonal Antibody (8D12), CoraLite® Plus 488

          View all (75) ERK1/2 antibodies

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          Cite Phospho-ERK1/2 (Thr202, Tyr204) Recombinant Rabbit Monoclonal Antibody (8D12), CoraLite® Plus 488

          Additional Information:
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          • Antibody Testing Data (1)
          Phospho-ERK1/2 (Thr202, Tyr204) Antibody in Flow Cytometry (Flow)
          Group 53 Created with Sketch.
          Phospho-ERK1/2 (Thr202, Tyr204) Antibody in Flow Cytometry (Flow)
          Group 53 Created with Sketch.

          FIGURE: 1 / 1

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          Phospho-ERK1/2 (Thr202, Tyr204) Antibody (CL488-80031) in Flow

          1X10^6 HepG2 cells untreated (dashed lines) or treated with CalycµLin A which intracellularly stained with 0.25 µg Coralite Plus 488 Phospho-Erk1/2 (Thr202/Tyr204) Recombinant Antibody (CL488-80031, Clone: 8D12) (red), or 0.25 µg CoraLite Plus 488 Rabbit IgG Isotype Control RecAb (CL488-98136, Clone: 240953C9) (blue). Cells were fixed with 4% PFA and permeabilized with 90% MeOH. {{ $ctrl.currentElement.advancedVerification.fullName }} validation info. View more
          Published figure supplied by benchsci-logo
          PMID: {{$ctrl.currentElement.benchSciPubmedId}}
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          Phospho-ERK1/2 (Thr202, Tyr204) Antibody in Flow Cytometry (Flow)

          Product Details

          CL488-80031

          Applications
          Tested Dilution
          Publications

          Flow Cytometry (Flow)

          0.25 µg per 10^6 cells
          -
          Product Specifications

          Species Reactivity

          Human

          Host/Isotype

          Rabbit / IgG

          Expression System

          CHO cells

          Class

          Recombinant Monoclonal

          Type

          Antibody

          Clone

          8D12

          Immunogen

          Peptide

          Conjugate

          CoraLite® Plus 488 CoraLite® Plus 488 CoraLite® Plus 488
          • Unconjugated
          • CoraLite 594
          • CoraLite Plus 647
          • Request custom conjugation

          Excitation/Emission Max

          493/522 nm

          Form

          Liquid

          Concentration

          1000 µg/mL

          Amount

          100 µg

          Purification

          Affinity chromatography

          Storage buffer

          PBS, pH 7.3, with 0.5% BSA, 50% glycerol

          Contains

          0.05% ProClin 300

          Storage conditions

          -20°C, store in dark

          Shipping conditions

          Wet ice

          Target Information

          ERK1 and ERK2 are widely expressed and are involved in the regulation of meiosis, mitosis, and postmitotic functions in differentiated cells. Many different stimuli, including growth factors, cytokines, virus infection, ligands for heterotrimeric guanine nucleotide-binding protein (G protein)-coupled receptors and transforming agents, activate the ERK1 and ERK2 pathways. When growth factors bind to the receptor tyrosine kinase, Ras interacts with Raf, the serine/threonine protein kinase and activates it as well. Once actived, Raf phosphorylates serine residue in 2 further kinases, MEK1/2, which in turn phosphorylates tyrosine/threonine in extracellular-signal regulated kinase (ERK) 1/2. Upon activation, the ERKs either phosphorylate a number of cytoplasmic targets or migrate to the nucleus, where they phosphorylate and activate a number of transcription factors such as c-Fos and Elk-1.

          For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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          Cite this product

          Bioinformatics

          Protein Aliases: ERK-1; ERK-2; erk1 erk2; Erk1; cancer susceptibility protein; ERK1b; ERK1c; Erk2; cancer susceptibility protein; ERT1; ERT2; Extracellular signal-regulated kinase 1; Extracellular signal-regulated kinase 2; extracellular signal-related kinase 1; Insulin-stimulated MAP2 kinase; MAP kinase 1; MAP kinase 2; MAP kinase 3; MAP kinase isoform p42; MAP kinase isoform p44; MAPK 1; MAPK 2; Microtubule-associated protein 2 kinase; Mitogen-activated protein kinase 1; Mitogen-activated protein kinase 2; Mitogen-activated protein kinase 3; p42; p42 MAP Kinase; p42-MAPK; p44-ERK1; p44-MAPK; protein tyrosine kinase ERK2; unnamed protein product

          View more View less

          Gene Aliases: ERK; ERK-1; ERK-2; ERK1; ERK2; ERT1; ERT2; HS44KDAP; HUMKER1A; MAPK1; MAPK2; MAPK3; NS13; p38; p40; p41; p41mapk; p42-MAPK; P42MAPK; p44-ERK1; p44-MAPK; P44ERK1; P44MAPK; PRKM1; PRKM2; PRKM3

          View more View less

          UniProt ID: (Human) P28482, (Human) P27361

          View more View less

          Entrez Gene ID: (Human) 5594, (Human) 5595

          View more View less

          Function(s)
          nucleotide binding phosphotyrosine binding DNA binding protein kinase activity protein serine/threonine kinase activity MAP kinase activity protein binding ATP binding RNA polymerase II carboxy-terminal domain kinase activity kinase activity transferase activity phosphatase binding identical protein binding protein serine kinase activity DNA-binding transcription factor binding
          Process(es)
          MAPK cascade regulation of transcription from RNA polymerase II promoter protein phosphorylation apoptotic process chemotaxis cellular response to DNA damage stimulus signal transduction cell surface receptor signaling pathway epidermal growth factor receptor signaling pathway chemical synaptic transmission heart development learning or memory insulin receptor signaling pathway organ morphogenesis positive regulation of macrophage chemotaxis positive regulation of peptidyl-threonine phosphorylation neural crest cell development Schwann cell development peptidyl-threonine phosphorylation cytosine metabolic process regulation of ossification regulation of cellular pH thyroid gland development regulation of protein stability lipopolysaccharide-mediated signaling pathway positive regulation of telomere maintenance response to lipopolysaccharide regulation of stress-activated MAPK cascade mammary gland epithelial cell proliferation cellular response to amino acid starvation response to nicotine intracellular signal transduction ERBB signaling pathway ERBB2-ERBB3 signaling pathway outer ear morphogenesis myelination response to exogenous dsRNA positive regulation of cholesterol biosynthetic process negative regulation of cell differentiation insulin-like growth factor receptor signaling pathway thymus development T cell receptor signaling pathway B cell receptor signaling pathway stress-activated MAPK cascade regulation of cytoskeleton organization Bergmann glial cell differentiation long-term synaptic potentiation face development lung morphogenesis trachea formation labyrinthine layer blood vessel development cardiac neural crest cell development involved in heart development interleukin-34-mediated signaling pathway chemokine-mediated signaling pathway ERK1 and ERK2 cascade response to epidermal growth factor cellular response to tumor necrosis factor caveolin-mediated endocytosis regulation of Golgi inheritance positive regulation of macrophage proliferation positive regulation of neuroinflammatory response regulation of early endosome to late endosome transport autophagosome assembly negative regulation of T cell mediated immune response to tumor cell transcription, DNA-templated regulation of gene expression negative regulation of autophagy positive regulation of autophagy phosphorylation sensory perception of pain BMP signaling pathway positive regulation of cyclase activity cellular response to nutrient levels negative regulation of proteasomal ubiquitin-dependent protein catabolic process peptidyl-tyrosine autophosphorylation TORC1 signaling glucose homeostasis signal transduction in response to DNA damage positive regulation of transcription from RNA polymerase II promoter modulation of synaptic transmission protein stabilization negative regulation of T cell activation cartilage development positive regulation of ERK1 and ERK2 cascade interleukin-1-mediated signaling pathway cellular response to mechanical stimulus negative regulation of cholesterol efflux xenophagy negative regulation of TORC1 signaling positive regulation of xenophagy
          It has to be done as per old AB suggested Products section.

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