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Recombinant Human ERBB4 (C-6His)

For research use only. Not intended for any clinical use.

Cat. No. :   RP00612 Tag :   C-6His

Expressed Region :   Gln26-Arg649 Expression System :   Human Cell

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Product Information

Gene Information

Cat. No. RP00612
Description Recombinant Human ERBB4 (C-6His) is produced in our Human Cell expression system. The amino acid region expressed is Gln26-Arg649 with a 6His tag at the C terminus.
Species Human
Tag C-6His
Mol Weight 70.5 KDa
Conjugate Unconjugated
Format Powder
Expressed Region Gln26-Arg649
Expression System Human Cell
Formulation Lyophilized from a 0.2 μm filtered solution of PBS, pH 7.4.
Purity >95% as determined by SDS-PAGE.
>90% as determined by SEC-MALS.
Endotoxin Level < 1 EU/µg of protein by LAL method
Storage Upon receipt, this product is stable for up to 6 months at temperatures below -70°C. Once reconstituted, the product is stable for up to 1 week at 4°C and up to 3 months at -20°C. Please avoid repeated freeze-thaw cycles.
Shipping The product is shipped with ice packs. Upon receipt, store it immediately at the temperature recommended below.
Reconstitution Always centrifuge tubes before opening. It is recommended to reconstitute the solution to a concentration above 100 μg/ml. Dissolve the lyophilized protein in distilled water. Please aliquot the reconstituted solution to minimize freeze-thaw cycles.
Target Gene ERBB4
Synonyms Receptor tyrosine-protein kinase erbB-4; Proto-oncogene-like protein c-ErbB-4; Tyrosine kinase-type cell surface receptor HER4; p180erbB4; ERBB4; HER4
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This gene is a member of the Tyr protein kinase family and the epidermal growth factor receptor subfamily. It encodes a single-pass type I membrane protein with multiple cysteine rich domains, a transmembrane domain, a tyrosine kinase domain, a phosphotidylinositol-3 kinase binding site and a PDZ domain binding motif. The protein binds to and is activated by neuregulins and other factors and induces a variety of cellular responses including mitogenesis and differentiation. Multiple proteolytic events allow for the release of a cytoplasmic fragment and an extracellular fragment. Mutations in this gene have been associated with cancer. Alternatively spliced variants which encode different protein isoforms have been described; however, not all variants have been fully characterized.

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