Recombinant Human DDR2 Kinase / CD167b Protein (Fc tag)

Categories: [Proteins / Peptides]
Discoidin domain receptor 2 (DDR2) or CD167b (cluster of differentiation 167b) is a kind of protein tyrosine kinases associated with cell proliferation and tumor metastasis, and collagen, identified as a ligand for DDR2, up-regulates matrix metallloproteinase 1 (MMP-1) and MMP-2 expression in cellular matrix. DDR2/CD167b was found to recognise the triple-helical region of collagen X as well as the NC1 domain. Binding to the collagenous region was dependent on the triple-helical conformation. DDR2/CD167b autophosphorylation was induced by the collagen X triple-helical region but not the NC1 domain, indicating that the triple-helical region of collagen X contains a specific DDR2 binding site that is capable of receptor activation. DDR2/CD167b is induced during stellate cell activation and implicate the phosphorylated receptor as a mediator of MMP-2 release and growth stimulation in response to type I collagen. Moreover, type I collagen-dependent upregulation of DDR2/CD167b expression establishes a positive feedback loop in activated stellate cells, leading to further proliferation and enhanced invasive activity.Immune Checkpoint   Immunotherapy   Cancer Immunotherapy   Targeted Therapy
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Properties

Data Sheet Click for Datasheet
Catalog Number TP07210
Size 20ug,50ug,100ug…
Host HEK293 Cells
Accession NP_001014796.1
Molecular Weight 69.4 kDa
AP_Mol_Weight 87 kDa
Tag C-Fc
Sequences Met 1-Arg 399
Purity > 95% by HPLC
Concentration
Formulation PBS
Other Names CD167;MIG20a;NTRKR3;TKT;TYRO10
Bioactivity Measured by its binding ability in a functional ELISA. Immobilized Rat tail Collagen I at 10 μg/ml can bind recombinant human DDR2-Fc Chimera with a linear range of 2.5-80 ng/ml. Scatchard analysis showed the affinity constant (Kd) of recombinant human DD
Storage Can be stored at +4°C short term (1-2 weeks). For long term storage, aliquot and store at -20°C or -70°C. Avoid repeated freezing and thawing cycles.
Postscript For research use only, not for use in diagnostic procedures.

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