Leinco Technologies

Recombinant Mouse Frizzled-4

Product Code:
 
LEI-F1028
Product Group:
 
Recombinant Proteins
Host Type:
 
Mouse
Regulatory Status:
 
RUO
Shipping:
 
Ambient
Storage:
 
This lyophilized protein is stable for six to twelve months when stored desiccated at -20°C to -70°C. After aseptic reconstitution this protein may be stored at 2°C to 8°C for one month or at -20°C to -70°C in a manual defrost freezer. Avoid Repeated Freeze Thaw Cycles. See Product Insert for exact lot specific storage instructions.
 

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LEI-F1028-50ug50 ug£522.00
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Further Information

Format:
This recombinant protein was 0.2 um filtered and lyophilized from modified Dulbecco?s phosphate buffered saline (1X PBS) pH 7.2 ? 7.3 with no calcium, magnesium, or preservatives.
Formulation:
This recombinant protein was 0.2 um filtered and lyophilized from modified Dulbecco?s phosphate buffered saline (1X PBS) pH 7.2 ? 7.3 with no calcium, magnesium, or preservatives.
Long Description:
Frizzled-4 (FZD4), also known as CD344 and EVR1, is a transmembrane glycoprotein of the Frizzled family within the G-protein coupled receptor superfamily. Members of this family encode seven transmembrane domain proteins that function as receptors for Wnt proteins. They can activate canonical Wnt/beta-catenin signaling as well as planar cell polarity and calcium flux pathways (1). FZD4 is particularly important in angiogenic Wnt pathway signaling and it is expressed in a variety of tissues (1). FZD4 is unusual in that it binds to Norrin, a non-wnt ligand, in addition to binding Wnt ligands (2). Mutations producing loss of function of either FZD4 or Norrin, result in blindness due to familial exudative vitreoretinopathy (FEVR). FZD4 also functions as a ligand-receptor pair to control vascular development in the retina and inner ear (3). FZD4 expression may play a critical role in responses to Wnt signaling in the tumor microenvironment (4).
NCBI Gene:
14366
Purity:
>95% by SDS-PAGE and analyzed by silver stain.
Target:
Frizzled-4

References

1. Huang, HC. et al. (2004) Genome Biol. 5:234 2. Xu, Q. et al. (2004) Cell 116:883 3. Nathans, J. et al. (2007) J. Biol. Chem. 282:4057 4. Holcombe, RF. et al. (2007) BMC Cell Biol. 8:12