S100A10 Antibody

SKU:BHA17102654
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NSJ Bioreagents
NSJ Bioreagents
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Overview
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Mouse monoclonal antibody against S100A10 (clone 6F4-E6-D5-C10) Mouse lgG2a. Supplied as Purified; Protein G affinity; for WB, ICC/IF, IP; in Human, Mouse, Rat samples.
Target S100A10
Host Mouse
Reactivity Human, Mouse, Rat
Clone number 6F4-E6-D5-C10
Application(s) WB, ICC/IF, IP
Clonality Monoclonal
Options selector
Catalog no. Formulation Size
F54052-0.1ML In PBS with 50% glycerol and 0.09% sodium azide
Available Options

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

  • Options: see the variant selector for available formats and sizes.
  • Lead time: 2–3 business days.
  • Storage: Store the S100A10 antibody at -20ºC.
  • 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.
Field Specification
Mfr No F54052
Alternative Names S100A10
Clonality
  • Monoclonal
Host Mouse
Immunogen A human recombinant partial protein was used as the immunogen for this S100A10 antibody.
Isotype
  • Mouse lgG2a
Product Type
  • Antibodies
  • Primary Antibodies
Purity Protein G affinity
Reactivity
  • Human
  • Mouse
  • Rat
Storage Store the S100A10 antibody at -20oC.
Target S100A10
UniProt # P08207

Overview

S100A10 antibody supplied as a purified reagent for WB, ICC/IF, IP in Human, Mouse, Rat samples. This product is a monoclonal (mouse origin) antibody (host: Mouse; isotype: Mouse lgG2a) intended for research use only.

Key elements and design rationale

  • Antibody identity: Monoclonal (mouse origin); host Mouse; isotype Mouse lgG2a; clone 6F4-E6-D5-C10.
  • Format and purification: format: Purified; purity: Protein G affinity.
  • Species reactivity (reported): Human, Mouse, Rat.
  • Applications (listed): WB, ICC/IF, IP.
  • Immunogen / epitope context: A human recombinant partial protein was used as the immunogen for this S100A10 antibody..

These attributes help you align the antibody with the biological question (target state, sample type, and readout) while keeping interpretation grounded in appropriate controls.

Biological background

S100A10 is the intended antigen for this primary antibody. Reported biological context includes: Because S100A10 induces the dimerization of ANXA2/p36, it may function as a regulator of protein phosphorylation in that the ANXA2 monomer is the preferred target (in vitro) of tyrosine-specific kinase.

Research relevance and current trends

  • Post-translational modification mapping: phosphorylation-site–resolved antibodies are used to connect signaling inputs to target activation states and downstream readouts.
  • Signal-flow and turnover studies: researchers pair immunodetection with perturbations that modulate enzymatic activity or proteostasis to understand regulation, stability, and feedback.
  • Spatial and single-cell approaches: imaging-based and cytometry workflows increasingly quantify heterogeneity and relocalization rather than only bulk abundance.

Common research applications

  • Western blot (WB): compare relative abundance/isoform patterns across conditions and sample types; band shifts may reflect processing or post-translational modification.
  • Immunocytochemistry / immunofluorescence (ICC/IF): assess subcellular distribution and stimulus-dependent relocalization; co-localization analysis can support pathway or organelle hypotheses.
  • Immunoprecipitation (IP): enrich native target and associated complexes for downstream analysis (e.g., immunoblotting or mass spectrometry) and interaction mapping.

Across these readouts, differences in signal intensity, localization, or complex enrichment are typically interpreted alongside sample-matched controls and independent evidence to distinguish regulation from technical variation.

Notes for experimental interpretation

  • Isoforms, cleavage products, or post-translational modifications can alter apparent molecular weight and subcellular distribution; interpret bands and staining patterns in the context of expected biology and sample preparation.
  • Species differences and epitope conservation may affect binding; use matched positive controls and orthogonal evidence when comparing across organisms.
  • Control concepts: include appropriate isotype and secondary-only controls (for imaging), and consider genetic perturbations (knockout/knockdown/overexpression) or independent antibodies targeting distinct epitopes to strengthen conclusions.

Epitope context is defined by the immunogen description; when available, align this with known domains, PTM sites, or family homology to anticipate potential cross-reactivity patterns. As a monoclonal antibody, binding is driven by a single epitope, which can support consistent recognition but may be sensitive to epitope masking by PTMs or conformational changes.

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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Experience the power of Celltrypse™, c-LEcta's innovative enzyme solution for gentle and efficient cell dissociation. Request your free sample and discover a superior alternative for your cell culture workflows.

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