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  1. Link

    products/primary-antibodies/p38-alphamapk14-antibody-9f12-ab59461.pdf

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Signal Transduction Protein Phosphorylation Ser / Thr Kinases MAPK Pathway
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Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)

  • Datasheet
  • SDS
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Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
  • Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
  • Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
  • Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)

Key features and details

  • Mouse monoclonal [9F12] to p38 alpha/MAPK14
  • Suitable for: WB, IHC-P
  • Reacts with: Rat, Human
  • Isotype: IgG1

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Overview

  • Product name

    Anti-p38 alpha/MAPK14 antibody [9F12]
    See all p38 alpha/MAPK14 primary antibodies
  • Description

    Mouse monoclonal [9F12] to p38 alpha/MAPK14
  • Host species

    Mouse
  • Tested applications

    Suitable for: WB, IHC-Pmore details
  • Species reactivity

    Reacts with: Rat, Human
    Predicted to work with: Dog, Chimpanzee
  • Immunogen

    Recombinant full length protein corresponding to Human p38 alpha/MAPK14 aa 1 to the C-terminus. (Expressed in E.coli) (NP_001306.1).
    Database link: Q16539-2

    Run BLAST with BLAST the sequence with ExPASy Run BLAST with BLAST the sequence with NCBI
  • Positive control

    • IHC-P: Human colon carcinoma tissue. WB: A431, A549, HCT-116, HeLa, HEK-293, HepG2, HL-60, HUVEC, Jurkat, MCF7, PC-3, T98G cell lysates; Rat brain lysate.
  • General notes

    The Life Science industry has been in the grips of a reproducibility crisis for a number of years. Abcam is leading the way in addressing this with our range of recombinant monoclonal antibodies and knockout edited cell lines for gold-standard validation. Please check that this product meets your needs before purchasing.

    If you have any questions, special requirements or concerns, please send us an inquiry and/or contact our Support team ahead of purchase. Recommended alternatives for this product can be found below, along with publications, customer reviews and Q&As

Properties

  • Form

    Liquid
  • Storage instructions

    Shipped at 4°C. Store at +4°C short term (1-2 weeks). Upon delivery aliquot. Store at -20°C long term. Stable for 12 months at -20°C.
  • Storage buffer

    Preservative: 0.09% Sodium azide
    Constituents: 50% Glycerol (glycerin, glycerine), PBS
  • Concentration information loading...
  • Purity

    Protein G purified
  • Clonality

    Monoclonal
  • Clone number

    9F12
  • Isotype

    IgG1
  • Research areas

    • Signal Transduction
    • Protein Phosphorylation
    • Ser / Thr Kinases
    • MAPK Pathway
    • Cancer
    • Signal transduction
    • Protein phosphorylation
    • Serine/threonine kinases
    • MAPK pathway
    • Immunology
    • Innate Immunity
    • TLR Signaling
    • Kits/ Lysates/ Other
    • Kits
    • Cell Signaling Kits
    • Other Cell Signaling Kits

Associated products

  • Compatible Secondaries

    • Goat Anti-Mouse IgG H&L (Alexa Fluor® 488) (ab150113)
    • Goat Anti-Mouse IgG H&L (HRP) (ab205719)
  • Isotype control

    • Mouse IgG1, kappa monoclonal [15-6E10A7] - Isotype Control (ab170190)
  • Positive Controls

    • HeLa whole cell lysate (ab150035)
    • Hep G2 whole cell lysate (ab166833)
    • MCF7 whole cell lysate (ab29537)
    • HeLa whole cell lysate (ab29545)
    • Jurkat whole cell lysate (ab30128)
    • A-431 whole cell lysate (ab30132)
    • Jurkat whole cell lysate (ab7899)
    • HEK-293 whole cell lysate (ab7902)
    • A-431 whole cell lysate (ab7909)
    • A549 whole cell lysate (ab7910)
    • HL-60 whole cell lysate (ab7914)
  • Recombinant Protein

    • Recombinant Human p38 alpha/MAPK14 protein (ab82188)

Applications

The Abpromise guarantee

Our Abpromise guarantee covers the use of ab59461 in the following tested applications.

The application notes include recommended starting dilutions; optimal dilutions/concentrations should be determined by the end user.

Application Abreviews Notes
WB
1/1000. Detects a band of approximately 38 kDa (predicted molecular weight: 41 kDa).
IHC-P
1/1000.
Notes
WB
1/1000. Detects a band of approximately 38 kDa (predicted molecular weight: 41 kDa).
IHC-P
1/1000.

Target

  • Function

    Serine/threonine kinase which acts as an essential component of the MAP kinase signal transduction pathway. MAPK14 is one of the four p38 MAPKs which play an important role in the cascades of cellular responses evoked by extracellular stimuli such as proinflammatory cytokines or physical stress leading to direct activation of transcription factors. Accordingly, p38 MAPKs phosphorylate a broad range of proteins and it has been estimated that they may have approximately 200 to 300 substrates each. Some of the targets are downstream kinases which are activated through phosphorylation and further phosphorylate additionnal targets. RPS6KA5/MSK1 and RPS6KA4/MSK2 can directly phosphorylate and activate transcription factors such as CREB1, ATF1, the NF-kappa-B isoform RELA/NFKB3, STAT1 and STAT3, but can also phosphorylate histone H3 and the nucleosomal protein HMGN1. RPS6KA5/MSK1 and RPS6KA4/MSK2 play important roles in the rapid induction of immediate-early genes in response to stress or mitogenic stimuli, either by inducing chromatin remodeling or by recruiting the transcription machinery. On the other hand, two other kinase targets, MAPKAPK2/MK2 and MAPKAPK3/MK3, participate in the control of gene expression mostly at the post-transcriptional level, by phosphorylating ZFP36 (tristetraprolin) and ELAVL1, and by regulating EEF2K, which is important for the elongation of mRNA during translation. MKNK1/MNK1 and MKNK2/MNK2, two other kinases activated by p38 MAPKs, regulate protein synthesis by phosphorylating the initiation factor EIF4E2. MAPK14 interacts also with casein kinase II, leading to its activation through autophosphorylation and further phosphorylation of TP53/p53. In the cytoplasm, the p38 MAPK pathway is an important regulator of protein turnover. For example, CFLAR is an inhibitor of TNF-induced apoptosis whose proteasome-mediated degradation is regulated by p38 MAPK phosphorylation. In a similar way, MAPK14 phosphorylates the ubiquitin ligase SIAH2, regulating its activity towards EGLN3. MAPK14 may also inhibit the lysosomal degradation pathway of autophagy by interfering with the intracellular trafficking of the transmembrane protein ATG9. Another function of MAPK14 is to regulate the endocytosis of membrane receptors by different mechanisms that impinge on the small GTPase RAB5A. In addition, clathrin-mediated EGFR internalization induced by inflammatory cytokines and UV irradiation depends on MAPK14-mediated phosphorylation of EGFR itself as well as of RAB5A effectors. Ectodomain shedding of transmembrane proteins is regulated by p38 MAPKs as well. In response to inflammatory stimuli, p38 MAPKs phosphorylate the membrane-associated metalloprotease ADAM17. Such phosphorylation is required for ADAM17-mediated ectodomain shedding of TGF-alpha family ligands, which results in the activation of EGFR signaling and cell proliferation. Another p38 MAPK substrate is FGFR1. FGFR1 can be translocated from the extracellular space into the cytosol and nucleus of target cells, and regulates processes such as rRNA synthesis and cell growth. FGFR1 translocation requires p38 MAPK activation. In the nucleus, many transcription factors are phosphorylated and activated by p38 MAPKs in response to different stimuli. Classical examples include ATF1, ATF2, ATF6, ELK1, PTPRH, DDIT3, TP53/p53 and MEF2C and MEF2A. The p38 MAPKs are emerging as important modulators of gene expression by regulating chromatin modifiers and remodelers. The promoters of several genes involved in the inflammatory response, such as IL6, IL8 and IL12B, display a p38 MAPK-dependent enrichment of histone H3 phosphorylation on 'Ser-10' (H3S10ph) in LPS-stimulated myeloid cells. This phosphorylation enhances the accessibility of the cryptic NF-kappa-B-binding sites marking promoters for increased NF-kappa-B recruitment. Phosphorylates CDC25B and CDC25C which is required for binding to 14-3-3 proteins and leads to initiation of a G2 delay after ultraviolet radiation. Phosphorylates TIAR following DNA damage, releasing TIAR from GADD45A mRNA and preventing mRNA degradation. The p38 MAPKs may also have kinase-independent roles, which are thought to be due to the binding to targets in the absence of phosphorylation. Protein O-Glc-N-acylation catalyzed by the OGT is regulated by MAPK14, and, although OGT does not seem to be phosphorylated by MAPK14, their interaction increases upon MAPK14 activation induced by glucose deprivation. This interaction may regulate OGT activity by recruiting it to specific targets such as neurofilament H, stimulating its O-Glc-N-acylation. Required in mid-fetal development for the growth of embryo-derived blood vessels in the labyrinth layer of the placenta. Also plays an essential role in developmental and stress-induced erythropoiesis, through regulation of EPO gene expression. Isoform MXI2 activation is stimulated by mitogens and oxidative stress and only poorly phosphorylates ELK1 and ATF2. Isoform EXIP may play a role in the early onset of apoptosis.
  • Tissue specificity

    Brain, heart, placenta, pancreas and skeletal muscle. Expressed to a lesser extent in lung, liver and kidney.
  • Sequence similarities

    Belongs to the protein kinase superfamily. CMGC Ser/Thr protein kinase family. MAP kinase subfamily.
    Contains 1 protein kinase domain.
  • Domain

    The TXY motif contains the threonine and tyrosine residues whose phosphorylation activates the MAP kinases.
  • Post-translational
    modifications

    Dually phosphorylated on Thr-180 and Tyr-182 by the MAP2Ks MAP2K3/MKK3, MAP2K4/MKK4 and MAP2K6/MKK6 in response to inflammatory citokines, environmental stress or growth factors, which a ctivates the enzyme. Dual phosphorylation can also be mediated by TAB1-mediated autophosphorylation. TCR engagement in T-cells also leads to Tyr-323 phosphorylation by ZAP70. Dephosphorylated and inactivated by DUPS1, DUSP10 and DUSP16.
    Acetylated at Lys-53 and Lys-152 by KAT2B and EP300. Acetylation at Lys-53 increases the affinity for ATP and enhances kinase activity. Lys-53 and Lys-152 are deacetylated by HDAC3.
    Ubiquitinated. Ubiquitination leads to degradation by the proteasome pathway.
  • Cellular localization

    Cytoplasm. Nucleus.
  • Target information above from: UniProt accession Q16539 The UniProt Consortium
    The Universal Protein Resource (UniProt) in 2010
    Nucleic Acids Res. 38:D142-D148 (2010) .

    Information by UniProt
  • Database links

    • Entrez Gene: 1432 Human
    • Entrez Gene: 81649 Rat
    • Omim: 600289 Human
    • SwissProt: Q16539 Human
    • SwissProt: P70618 Rat
    • Unigene: 485233 Human
    • Alternative names

      • CSAID-binding protein antibody
      • Csaids binding protein antibody
      • CSBP antibody
      • CSBP1 antibody
      • CSBP2 antibody
      • CSPB1 antibody
      • Cytokine suppressive anti-inflammatory drug-binding protein antibody
      • EXIP antibody
      • MAP kinase 14 antibody
      • MAP kinase MXI2 antibody
      • MAP kinase p38 alpha antibody
      • MAPK 14 antibody
      • MAPK14 antibody
      • MAX-interacting protein 2 antibody
      • Mitogen-activated protein kinase 14 antibody
      • Mitogen-activated protein kinase p38 alpha antibody
      • MK14_HUMAN antibody
      • Mxi2 antibody
      • p38 antibody
      • p38 MAP kinase antibody
      • p38 mitogen activated protein kinase antibody
      • p38ALPHA antibody
      • p38alpha Exip antibody
      • PRKM14 antibody
      • PRKM15 antibody
      • RK antibody
      • SAPK2A antibody
      • Stress-activated protein kinase 2a antibody
      see all

    Images

    • Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      All lanes : Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461) at 1/1000 dilution

      Lane 1 : MAPK11 recombinant (ab117219)
      Lane 2 : MAPK12 recombinant (ab117221)
      Lane 3 : MAPK13 recombinant (ab113869)
      Lane 4 : MAPK14 (p38) recombinant (ab82188)

      Lysates/proteins at 0.5 µg per lane.

      Performed under reducing conditions.

      Predicted band size: 41 kDa
      Observed band size: 43 kDa why is the actual band size different from the predicted?



      Lanes 1 - 4: Green - ab59461 observed at 43 kDa.

      ab59461 was shown to react with Anti-p38 antibody [9F12] in Western blot. Membranes were blocked in 100% Licor before incubation with ab59461 and overnight at 4 °C at a 1 in 1000 dilution. Blots were incubated with Goat anti-Mouse IgG H&L (IRDye® 800CW) preabsorbed (ab216772) secondary antibody at 1 in 20000 dilution for 1 h at room temperature before imaging.

    • Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      All lanes : Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461) at 1/1000 dilution

      Lane 1 : Recombinant Human p38 beta/MAPK11 protein (ab117219)
      Lane 2 : Recombinant Human p38 gamma/MAPK12 protein (ab117221)
      Lane 3 : Recombinant Human p38 delta/MAPK13 protein (ab113869)
      Lane 4 : Recombinant Human p38 alpha/MAPK14 protein (ab82188)

      Predicted band size: 41 kDa

    • Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      Western blot - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      All lanes : Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461) at 1/1000 dilution

      Lane 1 : A431 (human epidermoid carcinoma cell line) cell lysate
      Lane 2 : A549 (human lung carcinoma cell line) cell lysate
      Lane 3 : HCT 116 (human colorectal carcinoma cell line) cell lysate
      Lane 4 : HeLa (human epithelial cell line from cervix adenocarcinoma) cell lysate
      Lane 5 : HEK-293 (human epithelial cell line from embryonic kidney) cell lysate
      Lane 6 : HepG2 (human liver hepatocellular carcinoma cell line) cell lysate
      Lane 7 : Hl-60 (human promyelocytic leukemia cell line) cell lysate
      Lane 8 : HUVEC (human umbilical vein endothelial cell line) cell lysate
      Lane 9 : Jurkat (human T cell leukemia cell line from peripheral blood) cell lysate
      Lane 10 : MCF7 (human breast adenocarcinoma cell line) cell lysate
      Lane 11 : PC-3 (human prostate adenocarcinoma cell line) cell lysate
      Lane 12 : T98G cell lysate
      Lane 13 : Rat brain lysate

      Lysates/proteins at 15 µg per lane.

      Secondary
      All lanes : Sheep Anti-Mouse IgG: HRP

      Predicted band size: 41 kDa

    • Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)
      Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-p38 alpha/MAPK14 antibody [9F12] (ab59461)

      Paraffin-embedded human colon carcinoma tissue stained for p38 using ab59461 at 1/10000 dilution in immunohistochemical analysis. Secondary Antibody: Biotin Goat Anti-Mouse at 1/2000 for 1 hour at RT. Counterstain: Mayer Hematoxylin (purple/blue) nuclear stain at 200 µl for 2 minutes at RT.

    Protocols

    • Western blot protocols
    • Immunohistochemistry protocols

    Click here to view the general protocols

    Datasheets and documents

    • SDS download

    • Datasheet download

      Download

    References (1)

    Publishing research using ab59461? Please let us know so that we can cite the reference in this datasheet.

    ab59461 has been referenced in 1 publication.

    • Zheng S  et al. CTRP9 protects against MIA-induced inflammation and knee cartilage damage by deactivating the MAPK/NF-?B pathway in rats with osteoarthritis. Open Life Sci 15:971-980 (2020). PubMed: 33817283

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