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EPH Receptor B2 Protein (EPHB2) (His tag,Fc Tag)

EPHB2 Origine: Humain Hôte: HEK-293 Cells Recombinant > 90 % as determined by reducing SDS-PAGE. Active
N° du produit ABIN7317769
  • Antigène Voir toutes EPH Receptor B2 (EPHB2) Protéines
    EPH Receptor B2 (EPHB2)
    Type de proteíne
    Recombinant
    Activité biologique
    Active
    Origine
    • 13
    • 7
    • 1
    • 1
    Humain
    Source
    • 8
    • 7
    • 2
    • 1
    • 1
    • 1
    HEK-293 Cells
    Purification/Conjugué
    Cette EPH Receptor B2 protéine est marqué à la His tag,Fc Tag.
    Fonction
    Recombinant Human EphB2 Protein (His & Fc Tag)(Active)
    Séquence
    Met 1-Leu 543
    Attributs du produit
    A DNA sequence encoding the extracellular domain (Met 1-Leu 543) of human EphB2 (NP_059145.2) was fused with the C-terminal polyhistidine-tagged Fc region of human IgG1 at the C-terminus.
    Pureté
    > 90 % as determined by reducing SDS-PAGE.
    niveau d'endotoxine
    < 1.0 EU per μg as determined by the LAL method.
    Biological Activity Comment
    Measured by its ability to bind recombinant human EphrinB2 in a functional ELISA.
    Top Product
    Discover our top product EPHB2 Protéine
  • Restrictions
    For Research Use only
  • Format
    Lyophilized
    Reconstitution
    Please refer to the printed manual for detailed information.
    Buffer
    Lyophilized from sterile PBS, pH 7.4
    Stock
    4 °C,-20 °C,-80 °C
    Stockage commentaire
    Generally, lyophilized proteins are stable for up to 12 months when stored at -20 to -80°C. Reconstituted protein solution can be stored at 4-8°C for 2-7 days. Aliquots of reconstituted samples are stable at < -20°C for 3 months.
  • Antigène
    EPH Receptor B2 (EPHB2)
    Autre désignation
    EphB2 (EPHB2 Produits)
    Synonymes
    CAPB Protein, DRT Protein, EK5 Protein, EPHT3 Protein, ERK Protein, Hek5 Protein, PCBC Protein, Tyro5 Protein, ERK2 Protein, ERT1 Protein, MAPK2 Protein, P42MAPK Protein, PRKM1 Protein, PRKM2 Protein, p38 Protein, p40 Protein, p41 Protein, p41mapk Protein, RGD1564232 Protein, Cek5 Protein, Drt Protein, ETECK Protein, Erk Protein, Nuk Protein, Prkm5 Protein, Qek5 Protein, Sek3 Protein, cek5 Protein, ephb2 Protein, xEphB2 Protein, si:ch73-160e9.1 Protein, tpx2 Protein, wu:fb09e10 Protein, wu:fc64a03 Protein, wu:fi18g12 Protein, zgc:112296 Protein, EPH receptor B2 Protein, mitogen-activated protein kinase 1 Protein, Eph receptor B2 Protein, EPH receptor B2 L homeolog Protein, eph receptor B2a Protein, eph receptor B2b Protein, EPHB2 Protein, MAPK1 Protein, Ephb2 Protein, ephb2.L Protein, ephb2a Protein, ephb2b Protein
    Sujet

    Background: Ephrin type-B receptor 2, also known as EphB2, belongs to the ephrin receptor subfamily of the protein-tyrosine kinase family which 16 known receptors (14 found in mammals) are involved: EPHA1, EPHA2, EPHA3, EPHA4, EPHA5, EPHA6, EPHA7, EPHA8, EPHA9, EPHA10, EPHB1, EPHB2, EPHB3, EPHB4, EPHB5, EPHB6. EphB2 receptor tyrosine kinase phosphorylates syndecan-2 and that this phosphorylation event is crucial for syndecan-2 clustering and spine formation. The Eph family of receptor tyrosine kinases (comprising EphA and EphB receptors) has been implicated in synapse formation and the regulation of synaptic function and plasticity6. Ephrin receptors are components of cell signalling pathways involved in animal growth and development, forming the largest sub-family of receptor tyrosine kinases (RTKs). Ligand-mediated activation of Ephs induce various important downstream effects and Eph receptors have been studied for their potential roles in the development of cancer. EphB receptor tyrosine kinases are enriched at synapses, suggesting that these receptors play a role in synapse formation or function. We find that EphrinB binding to EphB induces a direct interaction of EphB with NMDA-type glutamate receptors. This interaction occurs at the cell surface and is mediated by the extracellular regions of the two receptors, but does not require the kinase activity of EphB.

    Synonym: CAPB,DRT,EK5,EPHT3,ERK,Hek5,PCBC,Tyro5

    Poids moléculaire
    86 kDa
    NCBI Accession
    NP_059145
    Pathways
    Signalisation RTK, Regulation of long-term Neuronal Synaptic Plasticity, S100 Proteins
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