Recombinant Rat Receptor tyrosine-protein kinase erbB-3 (Erbb3), partial - CD BioSciences

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Recombinant Rat Receptor tyrosine-protein kinase erbB-3 (Erbb3), partial

Recombinant Rat Receptor tyrosine-protein kinase erbB-3 (Erbb3), partial

SPP-02339

Size Price
20 μg Online Inquiry
100 μg Online Inquiry
500 μg Online Inquiry
Target Information
Species Rattus norvegicus
Target Name HER3/ErbB3
UniProt No. Q62799
Subcellular Location Membrane, Single-pass type I membrane protein
Gene Abbr. Erbb3
Full Name erb-b2 receptor tyrosine kinase 3
Alias nuc-ErbB3
Introduction HER3/ErbB3 is a member of the ErbB receptor protein tyrosine kinase family, but it lacks tyrosine kinase activity. Tyrosine phosphorylation of ErbB3 depends on its association with other ErbB tyrosine kinases. Upon ligand binding, heterodimers form between ErbB3 and other ErbB proteins, and ErbB3 is phosphorylated on tyrosine residues by the activated ErbB kinase. There are at least 9 potential tyrosine phosphorylation sites in the carboxy-terminal tail of ErbB3. These sites serve as consensus binding sites for signal transducing proteins, including Src family members, Grb2, and the p85 subunit of PI3 kinase, which mediate ErbB downstream signaling. Both Tyr1222 and Tyr1289 of ErbB3 reside within a YXXM motif and participate in signaling to PI3K.Investigators have found that ErbB3 is highly expressed in many cancer cells and activation of the ErbB3/PI3K pathway is correlated with malignant phenotypes of adenocarcinomas. Research studies have demonstrated that in tumor development, ErbB3 may function as an oncogenic unit together with other ErbB members (e.g. ErbB2 requires ErbB3 to drive breast tumor cell proliferation). Thus, investigators view inhibiting interaction between ErbB3 and ErbB tyrosine kinases as a novel strategy for anti-tumor therapy.
Product Details
Product Type Recombinant Protein
Storage & Handling
Storage Temp. Store at -20 °C upon receipt unless otherwise instructed.
Handling Aliquoting is necessary for mutiple use. Avoid repeated freeze-thaw cycles.

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