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Recombinant Human BMX

Cat.No.: BMX-26755TH
Product Overview: Recombinant full length BMX protein (Human), was expressed by baculovirus in Sf9 insect cells using a N-terminal tag, MW 110 kDa.
Description: This gene encodes a non-receptor tyrosine kinase belonging to the Tec kinase family. The protein contains a PH-like domain, which mediates membrane targeting by binding to phosphatidylinositol 3,4,5-triphosphate (PIP3), and a SH2 domain that binds to tyrosine-phosphorylated proteins and functions in signal transduction. The protein is implicated in several signal transduction pathways including the Stat pathway, and regulates differentiation and tumorigenicity of several types of cancer cells. Multiple alternatively spliced variants, encoding the same protein, have been identified.
Tissue specificity: Preferentially expressed in epithelial and endothelial cells.
Form: Liquid
Storage buffer: Preservative: NoneConstituents: 25% Glycerol, 50mM Tris HCl, 150mM Sodium chloride, 0.25mM DTT, 0.1mM EGTA, 0.1mM EDTA, 0.1mM PMSF, pH 7.5
Storage: Shipped on dry ice. Upon delivery aliquot and store at -80oC. Avoid freeze / thaw cycles.
Sequence Similarities: Belongs to the protein kinase superfamily. Tyr protein kinase family. TEC subfamily.Contains 1 Btk-type zinc finger.Contains 1 PH domain.Contains 1 protein kinase domain.Contains 1 SH2 domain.
Gene Name: BMX BMX non-receptor tyrosine kinase [ Homo sapiens ]
Official Symbol: BMX
Synonyms: BMX; BMX non-receptor tyrosine kinase; cytoplasmic tyrosine-protein kinase BMX; ETK; PSCTK3;
Gene ID: 660
mRNA Refseq: NM_001721
Protein Refseq: NP_001712
MIM: 300101
Uniprot ID: P51813
Chromosome Location: Xp22.2
Pathway: Angiopoietin receptor Tie2-mediated signaling, organism-specific biosystem; Apoptosis, organism-specific biosystem; Apoptotic cleavage of cellular proteins, organism-specific biosystem; Apoptotic executionphase, organism-specific biosystem; IL-3 Signaling Pathway, organism-specific biosystem;
Function: ATP binding; metal ion binding; non-membrane spanning protein tyrosine kinase activity; nucleotide binding; protein binding;

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