Recombinant Human AXL Protein, hFc Tag
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Amount : | 50 µg |
Content : | Lyophilized from sterile PBS, pH 7.4. Normally 5 % - 8% trehalose is added as protectants before lyophilization. |
Storage condition : | Store at -20°C to -80°C for 12 months in lyophilized form. After reconstitution, if not intended for use within a month, aliquot and store at -80°C (Avoid repeated freezing and thawing). Lyophilized proteins are shipped at ambient temperature. |
Uniprot ID : | P30530 |
Alternative Name : | AXL,UFO |
Molecular Characterization: AXL(Ala26-Pro449) hFc(Glu99-Ala330)
Molecular weight: The protein has a predicted molecular mass of 71.9 kDa after removal of the signal peptide.The apparent molecular mass of AXL-hFc is approximately 100-130 kDa due to glycosylation.
Description: Recombinant Human AXL with C-terminal human Fc tag
The protein encoded by this gene is a member of the Tyro3-Axl-Mer (TAM) receptor tyrosine kinase subfamily. The encoded protein possesses an extracellular domain which is composed of two immunoglobulin-like motifs at the N-terminal, followed by two fibronectin type-III motifs. It transduces signals from the extracellular matrix into the cytoplasm by binding to the vitamin K-dependent protein growth arrest-specific 6 (Gas6). This gene may be involved in several cellular functions including growth, migration, aggregation and anti-inflammation in multiple cell types. Alternative splicing results in multiple transcript variants of this gene.
Molecular weight: The protein has a predicted molecular mass of 71.9 kDa after removal of the signal peptide.The apparent molecular mass of AXL-hFc is approximately 100-130 kDa due to glycosylation.
Description: Recombinant Human AXL with C-terminal human Fc tag
The protein encoded by this gene is a member of the Tyro3-Axl-Mer (TAM) receptor tyrosine kinase subfamily. The encoded protein possesses an extracellular domain which is composed of two immunoglobulin-like motifs at the N-terminal, followed by two fibronectin type-III motifs. It transduces signals from the extracellular matrix into the cytoplasm by binding to the vitamin K-dependent protein growth arrest-specific 6 (Gas6). This gene may be involved in several cellular functions including growth, migration, aggregation and anti-inflammation in multiple cell types. Alternative splicing results in multiple transcript variants of this gene.
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