| Field | Specification |
|---|---|
| Alternative Names | Tyrosine-protein kinase transmembrane receptor ROR2, Neurotrophic tyrosine kinase, receptor-related 2, ROR2, NTRKR2 |
| Endotoxin Level | |
| Expression System | |
| Form | Lyophilized powder |
| Formulation | |
| Molecular Weight | |
| Product Type | |
| Purity | |
| Reconstitution | |
| Species | |
| Storage | |
| Target | |
| UniProt # |
Background
ROR2 is used in research use only (RUO) settings as a defined recombinant protein reagent. Bench researchers commonly leverage recombinant proteins to create controlled experimental conditions for mechanistic studies, assay development, interaction mapping, and quantitative benchmarking across model systems.
Also known as: Tyrosine-protein kinase transmembrane receptor ROR2, Neurotrophic tyrosine kinase, receptor-related 2, ROR2, NTRKR2.
Biological significance and function
ROR2 is commonly investigated in RUO studies for its role in ligand recognition and receptor-mediated signaling. Recombinant receptor ectodomains or domains are often used to analyze binding specificity/affinity, interrogate competitive interactions, and support structural or biophysical experiments.
Mechanistically, researchers often analyze how ROR2 participates in pathway networks through molecular interactions, localization, and regulated activity. Depending on the target class, this can involve receptor-mediated signaling, enzymatic catalysis, complex assembly, or structural organization that shapes downstream cellular phenotypes.
Research relevance: RUO studies frequently connect ROR2 to perturbations such as immune stimulation, stress signaling, differentiation cues, metabolic remodeling, or engineered genetic modulation—then interpret downstream readouts using complementary pathway markers.
Molecular characteristics
Molecular features matter in RUO experiments: domain boundaries, oligomerization state, and PTM sensitivity can influence binding behavior, stability, and functional readouts in vitro.
- Source species: Human
- Construct / expression region: aa 34-403
- Approx. molecular weight: 50-60 kDa
- Purity: Greater than 95% as determined by SDS-PAGE.
- Endotoxin level: < 1 EU/µg as determined by LAL test.
- Form: Lyophilized powder
- Formulation: Lyophilized from a 0.2 μm filtered solution of PBS, pH 7.4.
- Reconstitution: Centrifuge the vial at 10000 rpm for 30 s 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.
PTM considerations: For many extracellular ligands and receptor ectodomains, disulfide bonds and glycosylation can influence stability and binding. PTM dependence is target- and assay-specific. Eukaryotic expression can support native-like folding and certain PTMs, which may better match some receptor/ligand assays.
Expression and purification strategy
Expression system: This protein is produced in a mammalian expression system, which can support native-like folding, disulfide bonding, and PTMs (e.g., glycosylation) that may be important for extracellular ligands, receptors, and secreted proteins in research assays.
Purification transparency (research credibility): In research-grade recombinant protein production, constructs are commonly purified via affinity and polishing steps (e.g., chromatography) to reduce contaminants and improve batch-to-batch consistency. When present, affinity tags (e.g., His/GST/Fc) can simplify purification; tag presence or removal can influence certain binding or structural assays.
Form and handling context: Lyophilized proteins are frequently used in RUO labs to support stability during storage and shipment, while formulation components and reconstitution conditions can impact solubility and aggregation—important considerations when comparing studies across publications.
Research interpretation
Research interpretation: Receptor abundance, domain composition, and PTM state can influence binding and signaling outputs. When using recombinant ROR2, researchers often consider construct boundaries (domain/region), oligomerization, and PTM sensitivity as potential drivers of assay behavior.
Using recombinant protein as a defined reagent: recombinant ROR2 is commonly used as a quantitative input for assay calibration, antibody/ligand binding studies, pathway reconstitution, and controlled perturbation experiments. Researchers often consider isoforms, fragments, or construct boundaries when comparing results across studies.
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