Caspase 3 Antibody

SKU:BHA17109671
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NSJ Bioreagents
NSJ Bioreagents
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    Overview
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    Anti-XIAP antibody (Mouse, clone 15G8, Mouse IgG1) for WB, IHC-P, IF, FACS in research assays (RUO).
    Target XIAP
    Clone number 15G8
    Host Mouse
    Reactivity Human
    Isotype Mouse IgG1
    Application WB, IHC-P, IF, FACS
    Conjugate(s) Unconjugated
    Available Options

    Select the variant that best fits your experiment. Availability and lead time may vary by option.

    • Options: Formulation: 0.5mg/ml if reconstituted with 0.2ml sterile DI water; Size: 100 ug
    • Lead time: typically ships in ~2-3 business days; timing may vary by selected option.
    • Storage: After reconstitution, the Caspase 3 antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
    • Shipping: cold-chain shipment (typically with ice packs).
    • Upon receipt: store at the recommended temperature as soon as possible.
    • Sales terms and conditions: Please review prior to ordering.
    Options selector
    Catalog no. Formulation Size
    RQ4905 0.5mg/ml if reconstituted with 0.2ml sterile DI water
    Field Specification
    Clonality
    • Monoclonal (mouse origin)
    Host Mouse
    Immunogen Amino acids T67-D175 from the human protein were used as the immunogen for the Caspase 3 antibody.
    Isotype
    • Mouse IgG1
    Product Type
    • Antibodies
    • Primary Antibodies
    Purity Purified
    Reactivity
    • Human
    Storage After reconstitution, the Caspase 3 antibody can be stored for up to one month at 4oC. For long-term, aliquot and store at -20oC. Avoid repeated freezing and thawing.
    Target XIAP
    UniProt # P42574

    Overview

    Caspase 3 Antibody is a research-use antibody directed against XIAP. It is supplied for use in common immunoassay contexts such as WB, IHC-P, IF, FACS (RUO).

    Key elements and design rationale

    • Target: XIAP.
    • Description (provided): Caspase 3 is a caspase protein which interacts with Survivin, XIAP, CFLAR, Caspase 8, HCLS1, Deleted in Colorectal Cancer, TRAF3 and GroEL.
    • Antibody type: Mouse, clone 15G8, Mouse IgG1.
    • Format: Purified; Purified.
    • Species reactivity: tested: Human.
    • Immunogen (if provided): Amino acids T67-D175 from the human protein were used as the immunogen for the Caspase 3 antibody..

    The information above helps you match the antibody format to your assay context, interpret species-dependent differences, and anticipate how epitope context (isoforms, PTMs, or conformational state) may influence signal.

    Biological background

    Caspase 3 is a caspase protein which interacts with Survivin, XIAP, CFLAR, Caspase 8, HCLS1, Deleted in Colorectal Cancer, TRAF3 and GroEL. This gene which is located on 4q35 encodes a protein that is a member of the cysteine-aspartic acid protease (caspase) family. Sequential activation of caspases plays a central role in the execution-phase of cell apoptosis. Caspases exist as inactive proenzymes that undergo proteolytic processing at conserved aspartic residues to produce two subunits, large and small, that dimerize to form the active enzyme. It is the predominant caspase involved in the cleavage of amyloid-beta 4A precursor protein, which is associated with neuronal death in Alzheimer's disease. And the caspase-3 activation in heart failure sequentially cleaves SRF and generates a truncated SRF that appears to function as a dominant-negative transcription factor. Additionally, the caspase-3 influence on bone mineral density should be considered in any in vivo application of caspase-3 inhibitors to the treatment of human disease. In erythroid precursors undergoing terminal differentiation, Hsp70 prevents active CASP3 from cleaving GATA1 and inducing apoptosis.

    For curated annotations (gene/protein naming, domains, isoforms, and pathway links) for XIAP, consult primary databases such as UniProt, NCBI Gene, and Ensembl.

    Research relevance and current trends

    • Context-dependent expression studies: researchers often examine XIAP abundance and localization across perturbations (genetic, pharmacologic, or environmental) to connect phenotype to molecular changes.
    • Reagent reproducibility: there is growing emphasis on antibody specificity checks using orthogonal approaches (e.g., genetic perturbation or independent antibodies) and transparent reporting of clone/lot information.
    • Multi-modal datasets: antibody-based readouts are increasingly combined with transcriptomics and imaging to relate protein-level measurements to cell-state transitions.

    Common research applications

    • Western blotting (immunoblot) for relative detection of target protein abundance and apparent molecular weight.
    • Immunohistochemistry for spatial mapping of target expression across tissues and cell types.
    • Immunofluorescence for subcellular localization and cell-type specific expression patterns.
    • FACS: commonly used to detect or compare XIAP across experimental conditions (conceptual guidance only).

    When comparing conditions, interpret changes in signal in the context of sample composition, expected localization, and any known isoform complexity for the target.

    Notes for experimental interpretation

    • Isoforms and PTMs: alternative splicing or post-translational modifications can change epitope accessibility and apparent molecular weight; interpret bands/signals accordingly.
    • Cross-reactivity and matrix effects: background binding can vary by sample type, species, and blocking/detection chemistries; include appropriate negative controls.
    • Control concepts: where feasible, use genetic perturbation (KO/KD/overexpression), orthogonal assays, or independent antibodies to support specificity claims.

    Antibody considerations: Polyclonal reagents may recognize multiple epitopes and can increase sensitivity but may show broader binding profiles, while monoclonal clones provide a single-epitope readout that can improve consistency across experiments. If a conjugate is listed, the antibody supports more direct detection workflows; otherwise, it is typically used with a compatible secondary antibody.

    Customization & Add-ons: Can’t find the antibody you need—or require a custom format for your assay? We can help you source the best match or support custom antibody solutions for diverse research needs, including species and isotype selection, conjugations and labeling (e.g., HRP/AP, biotin, fluorophores), purification grade options (Protein A/G, affinity purified), formulation preferences (buffer selection, carrier-free, glycerol-free), custom concentrations and aliquoting, low-endotoxin options for cell-based work, and application-focused QC/validation support (project dependent). Click Talk to a Scientist to submit a request, email us at support@biohippo.com, or explore our Research Services for additional support—our team will follow up with feasibility details and next steps.

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