Transthyretin (TTR) L55P Variant Monomers

SKU:BHP11901153
Overview
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TRANSTHYRETIN recombinant protein (Human) for research use. Supplied as a defined reagent (expressed in E. coli; purity >95%) to support controlled biochemical studies and assay development.
Target TRANSTHYRETIN
Species Human
Expression System E. coli
Conjugate No tag
Purity >95%
Protein Length Full length
Options selector
Catalog no. Size
SPR-451B 100 ug
SPR-451C 100 ug x 2
SPR-451E 100 ug x 5
Available Options

Select from the available variant options shown for this product. Review lead time and shipping expectations before ordering.

  • Options: Size (100 ug, 100 ug x 2, 100 ug x 5).
  • Lead time: in-stock options typically ship in 2–3 business days.
  • Storage: store at -80°C; cold-chain shipment (typically with dry ice) is expected.
  • Please ensure someone is available to receive and store the shipment promptly.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Mfr No SPR-451
Accession Number NP_000362.1
Alternative Names Amyloid polyneuropathy Protein Monomer, Amyloidosis I Protein Monomer, ATTR Protein Monomer, Carpal tunnel syndrome 1 Protein Monomer, CTS Protein Monomer, CTS1 Protein Monomer,= HEL111 Protein Monomer, HsT2651 Protein Monomer, PALB Protein Monomer, Prealbumin Protein Monomer, Prealbumin amyloidosis type I Protein Monomer, Prealbumin Thyroxine-binding Protein Monomer, TBPA Protein Monomer, Thyroxine binding prealbumin Protein Monomer, Transthyretin Protein Monomer, TTHY_HUMAN Protein Monomer,TTR Protein Monomer, TTR protein
Cellular Localization Cytoplasm | Extracellular exosome | Extracellular Region | Lysosome
Concentration Lot/batch specific. See included datasheet.
Conjugate
  • No tag
Expression System
  • E. coli
Gene ID 7276
Product Type
  • Proteins & Peptide
  • Recombinant Protein
  • Chaperone & Stress Protein
Protein Length Full length
Protein Size 13.876 kDa
Purity >95%
Shipping Dry Ice. Shipping note: Product will be shipped separately from other products purchased in the same order.
Species Human
Storage -80ºC
Target TRANSTHYRETIN

Background

TRANSTHYRETIN is provided as a recombinant protein reagent for research use only. It is commonly used as a defined molecular component in biochemical and cell-free systems where controlled protein input supports mechanistic study and assay development.

Protein identity context: TRANSTHYRETIN (source species: Human; native localization: Cytoplasm | Extracellular exosome | Extracellular Region | Lysosome).

Human Recombinant Transthyretin (TTR) L55P Variant Monomers

Transthyretin is a transport protein in the serum and cerebospinal fluid that carried the thyroid hormone Thyroxine and retinol-binding protein bound to retinol. TTR misfolding and aggregation is known to be associated with the amyloiddiseases SSA, FAP and FAC (1-5). TTR is also thought to have beneficial side effects, such as binding to beta-amyloid protein, preventing beta-amyloid from accumulating into the plaques associated with Alzheimer's Disease (6). The L55P variant TTR is distinct from the other variants in that the L55P tetramer can dissociate to the monomeric amyloidogenic intermediate and form fibril precursors (7).

Biological significance and function

TRANSTHYRETIN is used in RUO research to interrogate molecular mechanisms, interaction networks, and pathway-linked phenotypes in experimental systems. This protein is frequently discussed in research themes such as Neuroscience and Neurodegeneration.

Molecular characteristics

Molecular characteristics: Key molecular attributes can influence binding behavior, stability, and assay background—especially for multimeric, disulfide-rich, or PTM-dependent proteins.

  • Source species: Human
  • Cellular localization (native): Cytoplasm | Extracellular exosome | Extracellular Region | Lysosome
  • Protein length: Full length
  • Protein size: 13.876 kDa
  • Purity: >95%
  • Expression system: E. coli
  • Purification: Ion-exchange Purified
  • Storage buffer: PBS pH 7.4

Post-translational considerations: E. coli expression typically yields a non-glycosylated recombinant form. This is often appropriate for intracellular enzymes and many binding studies, but extracellular ligands/receptors or disulfide-rich proteins may show activity or stability differences when PTMs are required.

Expression and purification strategy

Expression system: E. coli. Expression host choice can influence folding and PTM state, which may affect binding or activity depending on protein class.

Purification strategy: Ion-exchange Purified. Purification method and formulation help determine sample homogeneity and background in downstream biochemical assays.

Research interpretation

Research interpretation: Recombinant protein reagents can support controlled experiments such as reconstitution of molecular interactions, quantitative calibration, and mechanistic perturbation studies with defined inputs. Interpreting outcomes typically benefits from pairing the primary readout with orthogonal markers that report on pathway state, localization, and complex formation.

Other relevant information: For corresponding PFFs, see catalog# SPR-464

Certificate of Analysis: Certified >95% pure using SDS-PAGE analysis.

Tariff Code: 3822.19.0030

UNSPSC Code: 12352202

ADR Code: Non-hazardous

UN Code for transport: Non-hazardous

Cite this Product: Human Recombinant Transthyretin (TTR) L55P Variant Monomers (StressMarq Biosciences | Victoria, BC CANADA | Catalog# SPR-451B)
Human Recombinant Transthyretin (TTR) L55P Variant Monomers (StressMarq Biosciences | Victoria, BC CANADA | Catalog# SPR-451C)
Human Recombinant Transthyretin (TTR) L55P Variant Monomers (StressMarq Biosciences | Victoria, BC CANADA | Catalog# SPR-451E)

What is the purity of Transthyretin (TTR) L55P Variant Monomers (Human)?
>95% BioHippo includes a Certificate of Analysis (CoA) confirming purity per lot with every order.
How should Transthyretin (TTR) L55P Variant Monomers (Human) be stored?
-80ºC Prepare single-use aliquots after reconstitution to avoid repeated freeze–thaw cycles.
What expression system was used to produce this protein?
This recombinant protein was expressed in E. coli. The system was selected to achieve high yield, correct folding, and appropriate post-translational modifications.
What are the shipping conditions?
Dry Ice. Shipping note: Product will be shipped separately from other products purchased in the same order. Upon receipt, immediately transfer to recommended storage conditions.
Is this protein approved for clinical or in vitro diagnostic use?
No. Supplied for Research Use Only (RUO) — not intended for therapeutic applications or in vitro diagnostic procedures.
Can I request a custom size, tag variant, or formulation?
Yes. BioHippo can accommodate custom requests including alternative sizes, His/GST/Fc tag variants, bulk quantities, and custom formulations. See the Customization & Add-ons tab or email support@biohippo.com.

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.

1. Zeldenrust S.R., Benson M.D. (2010). Wiley. pp. 795–815.
2. Westermark P., Sletten K., Johansson B., Cornwell G.G. (1990). Proc. Natl. Acad. Sci. U.S.A. 87(7): 2843–5.
3. Andrade C. (1952). Brain. 75(3): 408–27.
4. Coelho T. (1996). Curr. Opin. Neurol. 9(5): 355–9.
5. Jacobson D.R, et. al. (1997). N. Engl. J. Med. 336(7): 466–73. 6. Li X. (2011). Mol Neurodegener. 6(1):79. 7. Lashuel H.A., Wurth C., Woo L., and Kelly J.W. (1999) Biochem. 38(41): 13560-13573.
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