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Human XAGE1A Protein, hFc Tag

Recombinant Human XAGE1A Protein with N-terminal human Fc tag


Cat.#:  11726

   Size:   100 μg

In Stock

          Product Description          
Cat.#:     11726
Product Name:   Human XAGE1A Protein
Size :    10 µg, 50 µg and 100 µg
Synonyms:   CT12.1;CT12.1A;CTP9;GAGED2;XAGE1
Target:    XAGE1A
Description:    Recombinant Human XAGE1A Protein with N-terminal human Fc tag
Background:     This gene is a member of the XAGE subfamily, which belongs to the GAGE family. The GAGE genes are expressed in a variety of tumors and in some fetal and reproductive tissues. This gene is strongly expressed in Ewing's sarcoma, alveolar rhabdomyosarcoma and normal testis. The protein encoded by this gene contains a nuclear localization signal and shares a sequence similarity with other GAGE/PAGE proteins. Because of the expression pattern and the sequence similarity, this protein also belongs to a family of CT (cancer-testis) antigens. Alternative splicing of this gene, in addition to alternative transcription start sites, results in multiple transcript variants. [provided by RefSeq, Jan 2010]
Species/Host:    HEK293
Molecular Weight:    The protein has a predicted molecular mass of 35.2 kDa after removal of the signal peptide. The apparent molecular mass of hFc-XAGE1A is approximately 35-55 kDa due to glycosylation.
Molecular Characterization:    hFc(Glu99-Ala330) XAGE1A(Met1-Val81)
Purity:    The purity of the protein is greater than 95% as determined by SDS-PAGE and Coomassie blue staining.
Formulation & Reconstitution:    Lyophilized from nanodisc solubilization buffer (20 mM Tris-HCl, 150 mM NaCl, pH 8.0). Normally 5% – 8% trehalose is added as protectants before lyophilization.
Storage & Shipping:    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.

Figure 1. Human XAGE1A Protein, hFc Tag on SDS-PAGE under reducing condition.