Active Recombinant Human IL1R1, MIgG2a Fc-tagged
Cat.No. : | IL1R1-3011H |
Product Overview : | The extracellular domain of human IL-1R1 (AAH67506.1)(Asp21-Thr332) is fused to the N-terminus of the Fc region of mouse IgG2a was expressed in CHO celL |
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Description : | This gene encodes a cytokine receptor that belongs to the interleukin-1 receptor family. The encoded protein is a receptor for interleukin-1 alpha, interleukin-1 beta, and interleukin-1 receptor antagonist. It is an important mediator involved in many cytokine-induced immune and inflammatory responses. This gene is located in a cluster of related cytokine receptor genes on chromosome 2q12. |
Source : | CHO cell |
Species : | Human |
Tag : | MIgG2a Fc-tagged |
Form : | Lyophilized from 0.2μm-filtered solution in PBS. |
Bio-activity : | Measured by its ability to inhibit IL-1 beta -dependent proliferation. |
Molecular Mass : | 62KDa (monomer) |
AA Sequence : | Asp21-Thr332 |
Endotoxin : | <0.06 eu/μg as determined by lal test.>0.06> |
Purity : | >98%, by SDS-PAGE under reducing conditions. |
Stability : | Stable for at least 1 year after receipt when stored at -20°C. Working aliquots are stable for up to 3 months when stored at -20°C. |
Reconstitution : | Reconstitute at 100μg/ml in sterile PBS. |
Warning : | Avoid freeze/thaw cycles. |
Protein length : | Asp21-Thr332 |
Gene Name : | IL1R1 interleukin 1 receptor, type I [ Homo sapiens ] |
Official Symbol : | IL1R1 |
Synonyms : | IL1R1; interleukin 1 receptor, type I; IL1R, IL1RA; interleukin-1 receptor type 1; CD121A; D2S1473; IL-1R-1; IL-1RT1; IL-1RT-1; antigen CD121a; interleukin receptor 1; interleukin-1 receptor alpha; interleukin-1 receptor type I; CD121 antigen-like family member A; interleukin 1 receptor alpha, type I; P80; IL1R; IL1RA; IL-1R-alpha; |
Gene ID : | 3554 |
mRNA Refseq : | NM_000877 |
Protein Refseq : | NP_000868 |
MIM : | 147810 |
UniProt ID : | P14778 |
Chromosome Location : | 2q12 |
Pathway : | Amoebiasis, organism-specific biosystem; Amoebiasis, conserved biosystem; Apoptosis, organism-specific biosystem; Apoptosis, conserved biosystem; Cytokine Signaling in Immune system, organism-specific biosystem; Cytokine-cytokine receptor interaction, organism-specific biosystem; Cytokine-cytokine receptor interaction, conserved biosystem; |
Function : | interleukin-1 receptor activity; interleukin-1, Type I, activating receptor activity; platelet-derived growth factor receptor binding; protease binding; protein binding; receptor activity; signal transducer activity; transmembrane signaling receptor activ |
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For Research Use Only. Not intended for any clinical use. No products from Creative BioMart may be resold, modified for resale or used to manufacture commercial products without prior written approval from Creative BioMart.
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Customer Reviews (3)
Write a reviewHigh stability.
Suitable for ELISA.
Effective in signaling studies.
Q&As (10)
Ask a questionLive-cell imaging techniques track IL1R1's movement on the cell surface, revealing how cellular localization impacts its responsiveness to ligands.
Advanced computational modeling and molecular dynamics simulations predict allosteric changes in IL1R1's intracellular domain upon ligand binding, revealing insights into its downstream signaling cascade.
FRET and cross-linking assays reveal the multimeric assembly of IL1R1, shedding light on its dimerization and oligomerization dynamics.
Confocal microscopy and flow cytometry visualize IL1R1's endocytosis and recycling, offering insights into its intracellular trafficking dynamics and signaling duration.
Co-immunoprecipitation assays unravel the interactions between IL1R1 and adapter proteins, elucidating the molecular details of its intracellular signaling cascade.
Mutagenesis studies dissect the interfaces between IL1R1 and accessory proteins like IL1RAP, uncovering their roles in ligand binding and signaling modulation.
Cryo-electron microscopy captures IL1R1's structural shifts during ligand binding, unveiling conformational changes that influence its ligand recognition.
Proteomics-based studies uncover the crosstalk between IL1R1 and other receptors in signaling networks, unveiling their interconnected pathways.
CRISPR-based approaches manipulate IL1R1 expression and alternative splicing, providing functional insights into the complex regulatory mechanisms governing its variations.
Phosphoproteomics characterizes IL1R1's phosphorylation landscape, revealing how post-translational modifications shape its downstream signaling outcomes.
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