Recombinant Human IRF7

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Product specifications
Category | Proteins and Peptides |
Host | E.Coli |
Reactivity | Human |
Assay Data | Centrifuge the vial before opening, reconstitute in sterile distilled water to a concentration of 0.1-1 mg/ml by gently pipetting 2-3 times, don't vortex. |
Recommended Dilution | ¥ |
Isotype | ¥ |
Clone ID | ¥ |
Observed MW | 24.4 kDa |
Expression | 67-287 |
Purity | Greater than 90% as determined by SDS-PAGE. |
Size 1 | 50μg |
Size 2 | 200μg |
Size 3 | 1mg |
Form | Lyophilized powder |
Tested Applications | Western Blot, ELISA |
Buffer | Lyophilized from a 0.2 μm filtered solution in 10 mM Hepes, 500 mM NaCl with 5% trehalose, pH 7.4. |
Availability | 7 days |
Storage | The lyophilized protein is stable at -20 °C for up to 1 year. After reconstitution, the protein solution is stable at -20 to -80 °C for 3 months or 1 week at 2 to 8 °C under sterile conditions. For extended storage, it is recommended to further dilute in working aliquots, avoid repeated freeze/thaw cycle. |
UniProt ID | Q92985 |
Alias | interferon regulatory factor 7, IRF 7, IRF 7H, IRF7, IRF7A |
Background | Protein IRF7 |
Status | RUO |
Note | Tag : N-terminal His Tag |
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IRF7 antibody
Key transcriptional regulator of type I interferon(IFN)-dependent immune responses and plays a critical role in the innate immune response against DNA and RNA viruses. Regulates the transcription of type I IFN genes(IFN-alpha and IFN-beta) and IFN-stimulated genes(ISG) by binding to an interferon-stimulated response element(ISRE) in their promoters. Can efficiently activate both the IFN-beta(IFNB) and the IFN-alpha(IFNA) genes and mediate their induction via both the virus-activated, MyD88-independent pathway and the TLR-activated, MyD88-dependent pathway. Required during both the early and late phases of the IFN gene induction but is more critical for the late than for the early phase. Exists in an inactive form in the cytoplasm of uninfected cells and following viral infection, double-stranded RNA(dsRNA), or toll-like receptor(TLR) signaling, becomes phosphorylated by IKBKE and TBK1 kinases. This induces a conformational change, leading to its dimerization and nuclear localization where along with other coactivators it can activate transcription of the type I IFN and ISG genes. Can also play a role in regulating adaptive immune responses by inducing PSMB9/LMP2 expression, either directly or through induction of IRF1. Binds to the Q promoter(Qp) of EBV nuclear antigen 1 a(EBNA1) and may play a role in the regulation of EBV latency. Can activate distinct gene expression programs in macrophages and regulate the anti-tumor properties of primary macrophages.
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