Close
Loading...
CONTACT US
:
:
:
Call us at:
:
:
:
Fax:
Email:

NTRK3

Products

Loading...

All listed services and products are For Research Use Only. Do Not use in any diagnostic or therapeutic applications.

Background

Neurotrophic receptor tyrosine kinase 3 (NTRK3) is a single-pass transmembrane receptor encoded by the NTRK gene family, expressed on neural cell plasma membranes to bind extracellular neurotrophic polypeptide ligands. The protein features large extracellular Ig-like ligand-binding domains, one transmembrane helix and cytoplasmic tyrosine kinase catalytic regions. It is documented to initiate intracellular phosphorylation cascades upon ligand association under neural tissue developmental conditions. Insufficient neurotrophic signal transduction disrupts neural cell steady-state regulation without functional NTRK3 receptors, and NTRK3 could tune downstream kinase cascade intensity across diverse neural microenvironments. Distinct developmental stages produce variable concentrations of matching neurotrophic ligands, requiring intact receptor assemblies to maintain balanced cell survival signals. Conserved extracellular domain pockets support specific recognition of cognate neurotrophic polypeptides.

Sequence variants within NTRK3 coding regions might shift ligand binding affinity and alter intracellular kinase signaling amplitude. No other Trk paralog fully reproduces NTRK3 ligand preference profiles, though partial signal overlap exists between family receptors. NTRK3 localizes exclusively to cell outer lipid leaflets and does not separate into soluble cytoplasmic enzyme fractions. Its single-pass integral membrane topology distinguishes it from soluble kinases, holding dual potential roles in extracellular ligand sensing and cytoplasmic phosphorylation cascade initiation. Reduced functional NTRK3 tends to weaken neurotrophic dependent signaling, making this receptor a suitable object for neural tyrosine kinase research.

Fig. 1 Domain schematic of Trk receptor family, showing annotated structure of human TrkC (NTRK3) for recombinant protein reagent reference. (OA Literature)Fig. 1 Domain architecture of Trk‑family neurotrophic receptors, illustrating the modular structure of TrkC (NTRK3) and its binding to ligand NT‑3.1

NTRK3 Protein Function: Core Roles in Neurotrophic Ligand Recognition and Kinase Signaling

The biological functions of integral membrane NTRK3 kinase receptor are focused on neurotrophic ligand capture and cytoplasmic phosphorylation transmission:

  • Neurotrophic Ligand Affinity: May interact with matching extracellular neurotrophic polypeptides at cell membrane surfaces without bilayer detachment. Ig domains form reversible ligand contact surfaces.
  • Neural Signal Tuning: Could adjust cytoplasmic kinase activation levels to avoid extreme shifts in cell survival regulatory signals. This stabilizes neural tissue steady-state function.
  • Kinase Cascade Mediator: Appears to trigger ordered tyrosine phosphorylation after extracellular ligand binding. Weak ligand-receptor interaction generates reversible conformational shifts detectable via standard laboratory analytical workflows.
  • Neural Tissue Homeostasis Modulation: Shapes graded neurotrophic signal amplitudes to coordinate neural cell regulatory responses.
  • Research Model Relevance: Sequence variants of NTRK3 might alter ligand-triggered kinase activity in laboratory analysis systems.

NTRK3 Protein Product

Creative Biolabs offers purified NTRK3 membrane protein samples produced under unified preparation workflows, including full-length NTRK3 constructs and isolated extracellular ligand-binding variants. Truncated fragments cannot support complete ligand recognition and kinase coupling activity, while full-length constructs fit neurotrophic receptor research. All batches receive uniform quality screening. Functional assessments may only be performed under simulated lipid bilayer microenvironment setups. Extracellular domain structural features are preserved across batches to support comparative ligand interaction testing. Full-length NTRK3 membrane samples retain intact ligand binding surfaces post-purification, supporting reliable detection of transient ligand-receptor complexes in comparative functional analysis.

NTRK3 Membrane Protein Product

Not finding the Membrane Protein product you need? Contact us to start your one-stop custom service!

NTRK3 Stable Cell Line Product

Creative Biolabs provides cell research models with adjustable NTRK3 expression levels, suitable for structural observation of single-pass kinase receptors and neurotrophic ligand interaction research. Sample assessment covers sustained membrane detection and preliminary ligand binding analysis, enabling side-by-side comparison of receptor activity under varying abundances. These cell models can be paired with phosphorylation detection schemes to track signal shifts linked to NTRK3 dosage changes.

NTRK3 Stable Cell Line Product

Not finding the stable cell line product you need? Contact us to start your one-stop custom service!

NTRK3 Recombinant Antibody Product

Anti-NTRK3 recombinant antibodies are generated via standardized protein preparation workflows, compatible with neural membrane localization mapping and receptor-ligand complex identification. The antibody series supports multi-dimensional observation of receptor distribution within neural tissue samples.

NTRK3 Recombinant Antibody Product

Not finding the recombinant antibody product you need? Contact us to start your one-stop custom service!

Product Features

  • Neurotrophic Ligand Matching Structural Traits: Retains native extracellular ligand pocket features, suitable for laboratory observation of polypeptide-receptor binding interactions.
  • Target Selective Recognition: May bind unique Ig domain regions unique to NTRK3, applicable to mechanistic Trk receptor research.
  • Neural Signaling Research Compatibility: Designed for standard laboratory analysis of neurotrophic regulatory pathways.
  • Full Customization Support: Customized NTRK3 membrane protein, antibody and cell model development can be arranged to meet neurotrophic receptor research demands.

Custom NTRK3 Research Services

Beyond catalog products, Creative Biolabs offers specialized custom services for NTRK3 research:

  • Custom NTRK3 Membrane Protein Production: Tailored mutant and fluorescent-tagged NTRK3 constructs for neurotrophic ligand binding analysis.
  • Custom Antibody Development: Generation of target-specific NTRK3 antibodies for neural membrane localization observation and receptor complex detection.
  • Stable Cell Line Engineering: Construction of customized cell systems with tunable kinase receptor expression levels.
  • Functional Assay Development: Custom detection workflows for measuring ligand-induced kinase signal activity.

Frequently Asked Questions (FAQ)

  1. What is the primary function of NTRK3?

    NTRK3 may act as integral single-pass tyrosine kinase receptor to bind extracellular neurotrophic ligands and initiate cytoplasmic phosphorylation cascades.

  2. Why is NTRK3 a significant research target?

    NTRK3 expression status might alter neural cell trophic signaling, serving as a key mediator of neural tissue homeostasis biological processes.

  3. Are Creative Biolabs' NTRK3 products suitable for clinical use?

    No, all NTRK3 related products and services are strictly for research use only, and cannot be applied in clinical workflows. All material design and functional screening are optimized exclusively for basic laboratory research, without meeting clinical application criteria.

  4. What types of NTRK3 products does Creative Biolabs offer?

    Offerings include full-length NTRK3 membrane protein, target-specific recombinant antibodies and tunable expression cell research models, supporting research on neurotrophic ligand and kinase signal transduction.

  5. How to assess ligand binding capacity of NTRK3 samples?

    Laboratory analysis schemes may include neurotrophic polypeptide binding assays to assess ligand recognition capacity under simulated lipid bilayer environments.

Reference
  1. Hernandez-del Cano, Carlos, et al. "Neurotrophins and their receptors: BDNF’s role in GABAergic neurodevelopment and disease." International journal of molecular sciences 25.15 (2024): 8312. Under Open Access license CC BY 4.0, without modification. https://doi.org/10.3390/ijms25158312
Our customer service representatives are available 24 hours a day, 7 days a week. Contact Us
© 2026 Creative Biolabs. | Contact Us
;