| Field | Specification |
|---|---|
| Mfr No | |
| Conjugate | |
| Endotoxin Level | |
| Expression System | |
| Form | Liquid |
| Formulation | |
| Molecular Weight | |
| Product Type | |
| Purity | |
| Shipping | |
| Storage | |
| Target |
Background
Target identity:IGGSPECIFIC is a enzyme. It is typically cytosolic, nuclear, or organelle-localized (depends on isoform).
IGGSPECIFIC is provided as a recombinant protein reagent for research use only. Recombinant proteins are commonly used as defined molecular inputs in biochemical and cell-free systems, enabling controlled interrogation of binding, activity, and pathway-relevant interactions.
Protein identity context: IGGSPECIFIC (expression region IdeS Protease is cloned from Streptococcus pyogenes and expressed in E.coli.; approx. molecular weight 37.57 kDa).
Biological significance and function
IGGSPECIFIC supports biochemical transformations that can be read out as changes in substrate/product balance or signaling intermediates. Recombinant enzymes enable controlled reconstitution experiments and mechanistic interrogation with defined inputs. This target is frequently explored in Metabolism & Enzymology research contexts.
Molecular characteristics
Key molecular attributes can influence binding behavior, stability, and assay background—especially for multimeric, disulfide-rich, or PTM-dependent targets.
- Expression system: E. coli
- Expression region: IdeS Protease is cloned from Streptococcus pyogenes and expressed in E.coli.
- Molecular weight: 37.57 kDa
- Purity: >90%
- Form: Liquid
- Formulation: 0.01M PBS, pH 7.4, 50% glycerol.
Post-translational considerations: Prokaryotic expression typically yields a non-glycosylated recombinant form. This is often appropriate for many intracellular proteins and binding studies, while disulfide-rich or PTM-dependent extracellular targets may behave differently when native PTMs are required. For enzymes, cofactor binding state and oligomerization can also shape apparent activity in reconstituted assays.
Structural and biochemical features
Enzyme behavior can be influenced by oligomerization, cofactor state, and local microenvironment, which may change apparent kinetics in simplified assay formats.
Expression and purification strategy
Expression system: E. coli. Expression host selection can influence folding and PTM state, which may affect activity or binding in different assay formats.
Purification: Affinity-chromatography. Purification approach and formulation influence sample homogeneity and background signal in downstream biochemical measurements.
Endotoxin consideration: Reported endotoxin level is Please contact with the lab for this information.; this parameter can matter when recombinant proteins are used in cell-based systems sensitive to innate immune activation.
Research interpretation
Research interpretation: Enzymatic readouts can reflect both abundance and catalytic state. Orthogonal measurements (substrate levels, product formation, and pathway markers) help clarify whether changes arise from expression, inhibition, or cofactor availability.
What is the purity of IdeS Protease (IgG specific)?
What buffer / formulation is this protein supplied in?
How should IdeS Protease (IgG specific) be stored?
What expression system was used to produce this protein?
What is the molecular weight of this protein?
What are the shipping conditions?
Is this protein approved for clinical or in vitro diagnostic use?
Can I request a custom size, tag variant, or formulation?
Can’t Find What You’re Looking For? We can help you source the best match or customize a recombinant protein solution for your study. Options may include species (human/mouse/rat), protein region/domain (full-length vs fragment), tag or label (His/GST/FLAG/biotin/fluorescent), expression system (E. coli/HEK293/insect), purity grade, formulation (buffer, carrier-free, glycerol-free), activity/functional validation (binding or enzymatic assays), endotoxin level (low-endotoxin for cell-based work), mutants/variants (point mutations, isoforms), and bulk or custom packaging. Click Talk to a Scientist to submit a request form, email us at support@biohippo.com, or explore our Research Services for additional support. Our team will be in contact with you shortly.