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Catalog Number | orb1494810 |
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Category | Proteins |
Description | I-TAC (Interferon-inducible T-cell α Chemoattractant), also known as CXCL11, is a chemokine belonging to the CXCL subfamily. Along with Interferon-γ induced Protein 10 kDa and Monokine Induced by Interferon-γ, I-TAC is strongly up-regulated by Interferon-γ and binds to the G-protein coupled receptor CXCR3. The expression of CXCR3 is associated with Th1-mediated immune responses and mediates chemotaxis of Th1 cells. I-TAC induces, maintains, and amplifies the inflammatory reactions, and sustains chronic immune responses against self-antigens. Although CXCR3 was thought to be the exclusive receptor of I-TAC initially, more evidence has shown that I-TAC can also bind to CXCR4 and CXCR7, and that I-TAC plays important roles in tumor development and angiostasis. Recombinant human I-TAC/CXCL11 (rhI-TAC) produced in E.coli is a single non-glycosylated polypeptide chain containing 74 amino acids. A fully biologically active molecule, rhI-TAC has a molecular mass of 8.4 kDa analyzed by reducing SDS-PAGE and is obtained by proprietary chromatographic techniques at GenScript. |
Form/Appearance | Lyophilized after extensive dialysis against PBS. |
Purity | > 95% as analyzed by SDS-PAGE and HPLC. |
MW | 8.4 kDa, observed by reducing SDS-PAGE. |
Protein Sequence | MFPMFKRGR CLCIGPGVKA VKVADIEKAS IMYPSNNCDK IEVIITLKEN KGQRCLNPKS KQARLIIKKV ERKNF |
Source | Escherichia coli. |
Biological Activity | ED50 400 units/mg. |
Endotoxins | < 0.2 EU/μg, determined by LAL method. |
Storage | Lyophilized recombinant human I-TAC/CXCL11 (rhI-TAC) remains stable up to 6 months at -80°C from date of receipt. Upon reconstitution, rhI-TAC remains stable up to 2 weeks at 4°C or up to 3 months at -20°C. |
Buffer/Preservatives | Lyophilized after extensive dialysis against PBS. |
Alternative names | ITAC, CXCL11 Read more... |
Note | For research use only |
Application notes | Reconstituted in ddH2O at 100 μg/mL. |
Expiration Date | 6 months from date of receipt. |
> 98% as analyzed by SDS-PAGE. | |
8.3 kDa, observed by reducing SDS-PAGE. | |
HEK 293 |