Recombinant Rat Interferon regulatory factor 1 (Irf1)

Product Details

Purity
>85% (SDS-PAGE)
Target Names
Irf1
Uniprot NO.
Species
Rattus norvegicus (Rat)
Source
Yeast
Expression Region
1-328
Target Protein Sequence
MPITRMRMRP WLEMQINSNQ IPGLSWINKE EMIFQIPWKH AALHGWDINK DACLFRSWAI HTGRYKAGEK EPDPKTWKAN FRCAMNSLPD IEEVKDQSRN KGSSAVRVYR MLPPLTKNQR KERKSKSSRD TKSKTKRKLC GDSSPDTLSD GLSSSTLPDD HSSYTAQGYL GQDLDMDRDI TPALSPCVVS SSLSEWHMQM DIMPDSTTDL YNLQVSPMPS TSEAATDEDE EGKLPEDIMK LFEQSEWQPT HVDGKGYLLN EPGAQLSTVY GDFSCKEEPE IDSPGGDIEI GIQRVFTEMK NMDPVMWMDT LLGNSTRPPS IQAIPCAP
Note: The complete sequence may include tag sequence, target protein sequence, linker sequence and extra sequence that is translated with the protein sequence for the purpose(s) of secretion, stability, solubility, etc.
If the exact amino acid sequence of this recombinant protein is critical to your application, please explicitly request the full and complete sequence of this protein before ordering.
Protein Length
Full length protein
Tag Info
N-terminal His-tagged/Tag-Free
The tag type will be determined during production process. If you have specified tag type, please tell us and we will develop the specified tag preferentially.
Storage
Store at -20°C, for extended storage, conserve at -20°C or -80°C.
Shelf Life
The shelf life is related to many factors, storage state, buffer ingredients, storage temperature and the stability of the protein itself.
Generally, the shelf life of liquid form is 6 months at -20°C/-80°C. The shelf life of lyophilized form is 12 months at -20°C/-80°C.
Notes
Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.

Customer Reviews and Q&A

 Customer Reviews

Target Background

Function(From Uniprot)
Transcriptional regulator which displays a remarkable functional diversity in the regulation of cellular responses. Regulates transcription of IFN and IFN-inducible genes, host response to viral and bacterial infections, regulation of many genes expressed during hematopoiesis, inflammation, immune responses and cell proliferation and differentiation, regulation of the cell cycle and induction of growth arrest and programmed cell death following DNA damage. Stimulates both innate and acquired immune responses through the activation of specific target genes and can act as a transcriptional activator and repressor regulating target genes by binding to an interferon-stimulated response element (ISRE) in their promoters. Binds to a consensus sequence in gene promoters. Its target genes for transcriptional activation activity include: genes involved in anti-viral response, such as IFN-alpha/beta, DDX58/RIG-I, TNFSF10/TRAIL, ZBP1, OAS1/2, PIAS1/GBP, EIF2AK2/PKR and RSAD2/viperin; antibacterial response, such as NOS2/INOS; anti-proliferative response, such as p53/TP53, LOX and CDKN1A; apoptosis, such as BBC3/PUMA, CASP1, CASP7 and CASP8; immune response, such as IL7, IL12A/B and IL15, PTGS2/COX2 and CYBB; DNA damage responses and DNA repair, such as POLQ/POLH; MHC class I expression, such as TAP1, PSMB9/LMP2, PSME1/PA28A, PSME2/PA28B and B2M and MHC class II expression, such as CIITA; metabolic enzymes, such as ACOD1/IRG1. Represses genes involved in anti-proliferative response, such as BIRC5/survivin, CCNB1, CCNE1, CDK1, CDK2 and CDK4 and in immune response, such as FOXP3, IL4, ANXA2 and TLR4. Stimulates p53/TP53-dependent transcription through enhanced recruitment of EP300 leading to increased acetylation of p53/TP53. Plays an important role in immune response directly affecting NK maturation and activity, macrophage production of IL12, Th1 development and maturation of CD8+ T-cells. Also implicated in the differentiation and maturation of dendritic cells and in the suppression of regulatory T (Treg) cells development. Acts as a tumor suppressor and plays a role not only in antagonism of tumor cell growth but also in stimulating an immune response against tumor cells.
Gene References into Functions
  1. IRF-1 protein levels gradually increased after a spinal cord injury. IRF-1 depletion decreases neuronal apoptosis. PMID:26342280
  2. These data implicate that sublytic C5b-9 induces the expression of both p300 and IRF-1, as well as p300-dependent IRF-1 acetylation that may contribute to XAF1 gene activation and subsequent glomerular mesangial cells apoptosis. PMID:24743731
  3. these findings identify HCN1 channels as a novel neural target for type I IFNs providing the possibility to tune neural responses PMID:23042740
  4. The Irf-1 overexpression-induced proliferation of VSMCs, the up-regulation of cyclin E/CDK2 and the acceleration of cell cycle progression are associated with ROS/Erk1/2 signaling pathway under high glucose conditions. PMID:24119616
  5. Overexpression of Irf-1 accelerated the proliferation of VSMCs, and down-regulation of Irf-1 depressed the proliferative ability of VSMCs under high-glucose conditions, indicating that Irf-1 was a positive regulator for high glucose-induced proliferation. PMID:22434733
  6. Nerve growth factor can improve the sodium current in PC-12 cells by regulating IRF1. PMID:21937806
  7. Sublytic C5b-9 complexes induce apoptosis of glomerular mesangial cells in rats with Thy-1 nephritis through role of interferon regulatory factor-1-dependent caspase 8 activation. PMID:22427665
  8. CCL5 induction in aorta and smooth muscle cells is mediated by IRF-1 while activation of p38 MAPK signaling inhibits CCL5 and IP-10 expression. PMID:22292067
  9. Data show that IRF1 and IRF8 mediate interferon-gamma signaling leading to oligodendroglial progenitor cell apoptosis. PMID:21261980
  10. The conclusion of this study is that STAT1 and IRF-1 function as components of the signaling pathway that mediates IFN-gamma-induced oligodendrocyte progenitor cell death. PMID:19606498
  11. IL-13 down-regulates the cytokine-induced iNOS transcription by decreasing iNOS specific IRF-1/ISRE binding activity PMID:17723228

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Subcellular Location
Nucleus. Cytoplasm.
Protein Families
IRF family
Database Links

UNIGENE: Rn.6396

KEGG: rno:24508

STRING: 10116.ENSRNOP00000010968

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