Recombinant Mouse Frizzled-5 Fc Chimera Protein, CF Summary
Details of Functionality |
Measured by its ability to inhibit Wnt-3a-induced alkaline phosphatase production by MC3T3‑E1 mouse preosteoblast cells. The ED 50 for this effect is 10-60 ng/ml in the presence of 5 ng/mL of
Recombinant Mouse Wnt-3a (Catalog # 1324-WN). |
Source |
Mouse myeloma cell line, NS0-derived mouse Frizzled-5 protein
Mouse Frizzled-5 (Ala27-Pro167) Accession # Q9EQD0 |
IEGRMD |
Mouse IgG2a (Glu98-Lys330) |
N-terminus |
|
C-terminus | |
Accession # |
|
N-terminal Sequence |
Ala27 |
Structure / Form |
Disulfide-linked homodimer |
Protein/Peptide Type |
Recombinant Proteins |
Gene |
Fzd5 |
Purity |
>95%, by SDS-PAGE visualized with Silver Staining and quantitative densitometry by Coomassie® Blue Staining. |
Endotoxin Note |
<0.10 EU per 1 μg of the protein by the LAL method. |
Applications/Dilutions
Dilutions |
|
Theoretical MW |
43 kDa. Disclaimer note: The observed molecular weight of the protein may vary from the listed predicted molecular weight due to post translational modifications, post translation cleavages, relative charges, and other experimental factors. |
SDS-PAGE |
54-64 kDa, reducing conditions |
Packaging, Storage & Formulations
Storage |
Use a manual defrost freezer and avoid repeated freeze-thaw cycles.- 12 months from date of receipt, -20 to -70 °C as supplied.
- 1 month, 2 to 8 °C under sterile conditions after reconstitution.
- 3 months, -20 to -70 °C under sterile conditions after reconstitution.
|
Buffer |
Lyophilized from a 0.2 μm filtered solution in PBS. |
Purity |
>95%, by SDS-PAGE visualized with Silver Staining and quantitative densitometry by Coomassie® Blue Staining. |
Reconstitution Instructions |
Reconstitute at 500 μg/mL in PBS. |
Notes
This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.
Alternate Names for Recombinant Mouse Frizzled-5 Fc Chimera Protein, CF
Background
Frizzled-5 is an approximately 62 kDa 7-TM glycoprotein that is one of at least ten Frizzled family Wnt receptors (1, 2). Wnt engagement of Frizzled, with low density lipoprotein receptor-related proteins LRP-5 or LRP-6 acting as co‑receptors, stabilizes beta -catenin and promotes gene transcription that is important in development and tissue maintenance (1). Frizzleds can also signal through non-canonical pathways independently of LRPs (1). Mature mouse Frizzled-5 consists of a 212 amino acid (aa) extracellular domain (ECD), a 283 aa 7-TM region, and a 64 aa cytoplasmic domain with a PDZ binding motif (2, 3). The ECD includes a cysteine-rich region (CRD) that binds Wnts and is highly conserved among Frizzled proteins (1, 2, 4). Within the N-terminal ECD, human Frizzled-5 shares 95% aa sequence identity with mouse and rat Frizzled-5. Frizzled-5 is expressed in embryonic tissues (telencephalon, pituitary, thalamus, hypothalamus, eye, liver, spleen, lung, and kidney), in the adult retina, colon, and pancreatic islets, some cancer cell lines, human embryonic stem cells, and in some monocyte and lymphocyte populations (2-8). Frizzled-5 functions as a receptor for Wnt-5a, Wnt-9b, Wnt-10b, Wnt-2b, and Wnt-7a (3, 5, 9, 10). It plays a role in the maintenance of yolk sac and placental vasculature (ishikawa) and in the regression of vitreous vasculature during eye development (5, 6, 11). It mediates the synaptogenic effect of Wnt-7a, contributes to the development of neuronal polarity, and is required for neuronal survival in the thalamus (3, 12, 13). In macrophages and monocytes, Frizzled-5 signaling induces the production of inflammatory cytokines (7, 8).
- Schulte, G. (2015) Eur. J. Pharmacol. 763:191.
- Saitoh T. et al. (2001) Int. J. Oncol. 19:105.
- Liu, C. et al. (2008) J. Neurosci. 28:5641.
- Katoh, Y. and M. Katoh (2007) Int. J. Oncol. 30:751.
- Ishikawa, T. et al. (2001) Development 128:25.
- Burns, C.J. et al. (2008) Dev. Dyn. 237:1614.
- Periera, C. et al. (2008) Arterioscler. Thromb. Vasc. Biol. 28:504.
- Blumenthal, A. et al. (2006) Blood 108:965.
- He, X. et al. (1997) Science 275:1652.
- Caricasole, A. et al. (2003) J. Biol. Chem 278:37024.
- Zhang, J. et al. (2008) Invest. Ophthalmol. Vis. Sci. 49:5561.
- Sahores, M. et al. (2010) Development 137:2215.
- Slater, P.G. et al. (2013) PLoS One 8:e78892.
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