Recombinant Mouse Protein Wnt-7A (WNT7A) Protein (His&Myc)

Beta LifeScience SKU/CAT #: BLC-07479P
Greater than 90% as determined by SDS-PAGE.
Greater than 90% as determined by SDS-PAGE.

Recombinant Mouse Protein Wnt-7A (WNT7A) Protein (His&Myc)

Beta LifeScience SKU/CAT #: BLC-07479P
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Product Overview

Description Recombinant Mouse Protein Wnt-7A (WNT7A) Protein (His&Myc) is produced by our E.coli expression system. This is a full length protein.
Purity Greater than 90% as determined by SDS-PAGE.
Uniprotkb P24383
Target Symbol WNT7A
Species Mus musculus (Mouse)
Expression System E.coli
Tag N-10His&C-Myc
Target Protein Sequence LGASIICNKIPGLAPRQRAICQSRPDAIIVIGEGSQMGLDECQFQFRNGRWNCSALGERTVFGKELKVGSREAAFTYAIIAAGVAHAITAACTQGNLSDCGCDKEKQGQYHRDEGWKWGGCSADIRYGIGFAKVFVDAREIKQNARTLMNLHNNEAGRKILEENMKLECKCHGVSGSCTTKTCWTTLPQFRELGYVLKDKYNEAVHVEPVRASRNKRPTFLKIKKPLSYRKPMDTDLVYIEKSPNYCEEDPVTGSVGTQGRACNKTAPQASGCDLMCCGRGYNTHQYARVWQCNCKFHWCCYVKCNTCSERTEMYTCK
Expression Range 32-349aa
Protein Length Full Length of Mature Protein
Mol. Weight 43.1 kDa
Research Area Cancer
Form Liquid or Lyophilized powder
Buffer Liquid form: default storage buffer is Tris/PBS-based buffer, 5%-50% glycerol. Lyophilized powder form: the buffer before lyophilization is Tris/PBS-based buffer, 6% Trehalose, pH 8.0.
Reconstitution Briefly centrifuged the vial prior to opening to bring the contents to the bottom. Reconstitute protein in deionized sterile water to a concentration of 0.1-1.0 mg/mL. It is recommended to add 5-50% of glycerol (final concentration) and aliquot for long-term storage at -20°C/-80°C. The default final concentration of glycerol is 50%.
Storage 1. Store at -20°C/-80°C upon receipt, aliquoting is necessary for mutiple use. 2. Avoid repeated freeze-thaw cycles. 3. Store working aliquots at 4°C for up to one week. 4. In general, protein in liquid form is stable for up to 6 months at -20°C/-80°C. Protein in lyophilized powder form is stable for up to 12 months at -20°C/-80°C.
Notes Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.

Target Details

Target Function Ligand for members of the frizzled family of seven transmembrane receptors that functions in the canonical Wnt/beta-catenin signaling pathway. Plays an important role in embryonic development, including dorsal versus ventral patterning during limb development, skeleton development and urogenital tract development. Required for central nervous system (CNS) angiogenesis and blood-brain barrier regulation. Required for normal, sexually dimorphic development of the Mullerian ducts, and for normal fertility in both sexes. Required for normal neural stem cell proliferation in the hippocampus dentate gyrus. Required for normal progress through the cell cycle in neural progenitor cells, for self-renewal of neural stem cells, and for normal neuronal differentiation and maturation. Promotes formation of synapses via its interaction with FZD5.
Subcellular Location Secreted, extracellular space, extracellular matrix. Secreted.
Protein Families Wnt family
Database References
Associated Diseases Defects in Wnt7a cause the postaxial hemimelia (px) phenotype that is characterized by limb patterning defects accompanied by Mullerian duct-associated sterility in both sexes.

Gene Functions References

  1. Wnt7a induces a unique phenotype of monocyte-derived macrophages with lower phagocytic capacity and differential expression of pro- and anti-inflammatory cytokines PMID: 28872671
  2. experiments indicate that Reck and Gpr124 are part of the cell surface protein complex that transduces Wnt7a- and Wnt7b-specific signals in mammalian CNS epithelial cells to promote angiogenesis and regulate the BBB PMID: 28803732
  3. WNT7a is sufficient to restore post-pubertal endometrial gland formation. PMID: 27965056
  4. we found that post-ejaculated semen from fertile wild-type males was solidified and the sperm were entrapped in Wnt7aCre/+;Esr1f/f uteri, compared to the watery semen (liquefied) found in Esr1f/f controls.Kallikrein-related peptidases 3 (KLK3) and other kallikrein-related peptidases from male prostate glands are responsible for semen liquefaction by cleaving gel-forming proteins PMID: 28414719
  5. Data show that the WIF domain of Wnt Inhibitory Factor 1 (WIF1) is bound by C-terminal domains of Wnt proteins Wnt5a and Wnt7a at two sites. PMID: 26342861
  6. Wnt7a is a novel regulator of ventral midbrain neurogenesis and dopaminergic neuron axon growth and guidance. PMID: 24803261
  7. Truncated Wnt7a lacking the conserved palmitoylation sites retains full biological activity in skeletal muscle. PMID: 24287629
  8. epithelial Wnt7a and Wnt7b are possible ligands of Fzd-mediated beta-catenin (Ctnnb1)-dependent (canonical) Wnt signaling in the adjacent undifferentiated periotic mesenchyme of fibrocytes in the murine inner ear PMID: 24727668
  9. Binding of Wnt7a to Fzd7 leads to an activation of noncanonical Wnt signaling, resulting in directed myogenic stem cell migration and enhanced engraftment. PMID: 24711502
  10. Wnt7a triggers melanocyte stem cell differentiation through beta-catenin activation, and Kitl might induce following migration of melanoblasts to epidermis PMID: 23702581
  11. Wnt7a exercised critical control over multiple steps of neurogenesis by regulating genes involved in both cell cycle control and neuronal differentiation. PMID: 23629626
  12. FN and Wnt7a together regulate the homeostatic levels of satellite stem cells and satellite myogenic cells during regenerative myogenesis. PMID: 23290138
  13. Hyperactivated c-Met led to increased NF-kappaB signaling, which in turn, drove de novo expression of Wnt7a and overexpression of Wnt7b in Pkd1(-/-) mouse kidneys. PMID: 22677559
  14. Our data demonstrate that Wnt7a is the earliest known gamma-motor neuron marker PMID: 22723712
  15. These results indicate that WNT7A plays a critical role in postnatal uterine gland morphogenesis and function, which are important for blastocyst implantation and fertility in the adult uterus. PMID: 21508348
  16. Data show that female Wnt7a-Cre(+)PR(f/-) mice are infertile due to defects in embryo attachment, stromal cell decidualization, and the inability to cease estrogen-induced epithelial cell proliferation. PMID: 22155565
  17. Data show that the Fzd7 receptor complex was associated with Galpha(s) and PI(3)K and these components were required for Wnt7a to activate the Akt/mTOR growth pathway in myotubes. PMID: 22179044
  18. Wnt-7a and sonic hedgehog (Shh) interfere differently with the process of neuronal differentiation by promoting distinct stages of neuronal differentiation in neonatal neural stem cells. PMID: 20868729
  19. Data show that removal of canonical Wnt inhibitor DKK1 from DKK1-involuted mice results in full recovery, suggesting that canonical Wnt signaling is required for the differentiation or proliferation of TEC populations. PMID: 20161711
  20. Wnt7a coordinates a variety of cell and developmental pathways that guide postnatal uterine growth and hormonal responses and that disruption of these pathways leads to aberrant cell death. PMID: 15070830
  21. stage-specific physiological roles of Wnt signaling during neural development. PMID: 15142975
  22. Wnt7a acts through low density lipoprotein receptor-related protein 6 and the canonical Wnt signaling pathway during dorsal and posterior limb development in the mouse PMID: 15880584
  23. Thus, our findings suggest that Wnt7a overexpression disrupts normal Wnt signaling in the neural tube, resulting in defective adherens junctions and neurulation. PMID: 16154760
  24. We show that loss of function of Dishevelled-1 (Dvl1) mimics and enhances the Wnt7a phenotype in the cerebellum.Wnt7a/Dvl1 double mutant mice reveal a defect in neurotransmitter release at mossy fiber-granule cell synapses PMID: 16818724
  25. Results suggest a critical role for Wnt7a in control of neuronal progenitor maturation. PMID: 17174942
  26. Wnt7a induces dissociation of the adenomatous polyposis coli protein from the beta-catenin cytoplasmic complex and the interaction of APC with alpha 7-nicotinic acetylcholine receptors in hippocampal neurons. PMID: 17507554
  27. CNS uses the canonical Wnt signaling pathway to promote formation and CNS-specific differentiation of the organ's vasculature PMID: 19023080
  28. Heterozygous and homozygous Vangl2(Lp) mutant postnatal tissues exhibit similar phenotypes and polarity defects and display a 50% reduction in Wnt7a levels PMID: 19363157
  29. Wnt7a signaling through the planar cell polarity pathway controls the homeostatic level of satellite stem cells and hence regulates the regenerative potential of muscle PMID: 19497282

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Proteins are sensitive to heat, and freeze-drying can preserve the activity of the majority of proteins. It improves protein stability, extends storage time, and reduces shipping costs. However, freeze-drying can also lead to the loss of the active portion of the protein and cause aggregation and denaturation issues. Nonetheless, these adverse effects can be minimized by incorporating protective agents such as stabilizers, additives, and excipients, and by carefully controlling various lyophilization conditions.

Commonly used protectant include saccharides, polyols, polymers, surfactants, some proteins and amino acids etc. We usually add 8% (mass ratio by volume) of trehalose and mannitol as lyoprotectant. Trehalose can significantly prevent the alter of the protein secondary structure, the extension and aggregation of proteins during freeze-drying process; mannitol is also a universal applied protectant and fillers, which can reduce the aggregation of certain proteins after lyophilization.

Our protein products do not contain carrier protein or other additives (such as bovine serum albumin (BSA), human serum albumin (HSA) and sucrose, etc., and when lyophilized with the solution with the lowest salt content, they often cannot form A white grid structure, but a small amount of protein is deposited in the tube during the freeze-drying process, forming a thin or invisible transparent protein layer.

Reminder: Before opening the tube cap, we recommend that you quickly centrifuge for 20-30 seconds in a small centrifuge, so that the protein attached to the tube cap or the tube wall can be aggregated at the bottom of the tube. Our quality control procedures ensure that each tube contains the correct amount of protein, and although sometimes you can't see the protein powder, the amount of protein in the tube is still very precise.

To learn more about how to properly dissolve the lyophilized recombinant protein, please visit Lyophilization FAQs.

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