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Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) (D6M4W) Rabbit mAb #44463

Item# Description List Price Web Price Qty
44463S Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) (D6M4W) Rabbit mAb - 100 µl $424.00
$381.60
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VIEW COMPANION PRODUCTS HIDE COMPANION PRODUCTS
Application Dilution Species-Reactivity Sensitivity MW (kDa) Isotype
W Human Transfected Only 110-130, 125-140, 180-200 Rabbit IgG
IP

Species cross-reactivity is determined by western blot.

Applications Key: W=Western Blotting, IP=Immunoprecipitation

Homology

Species predicted to react based on 100% sequence homology: Mouse, Rat.

Specificity / Sensitivity

Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) (D6M4W) Rabbit mAb detects immunoprecipitated or transfected levels of Axl/Mer/Tyro3 protein phosphorylated at Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681). The antibody may cross-react with other phosphorylated tyrosine proteins.

Source / Purification

Monoclonal antibody is produced by immunizing animals with synthetic phospho-peptides corresponding to residues surrounding Tyr698/Tyr749 of human Axl/Mer protein.

Western Blotting

Western Blotting

Western blot analysis of extracts from NCI-H1299 and SK-MEL-5 cells, untreated (-) or treated with GAS6 (400 ng/ml) and H2O2 (4 mM) for 10 min, using Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) (D6M4W) Rabbit mAb (upper) and Axl (C89E7) Rabbit mAb #8661 (lower 1), Mer (D21F11) XP® Rabbit mAb #4319 (lower 2), and Tyro3 (D38C6) Rabbit mAb #5585 (lower 3).

IP

IP

Immunoprecipitation of Phospho-Axl (Tyr698) protein from NCI-H1299 cells treated with GAS6 (400 ng/ml) and H2O2 (4 mM) for 10 min. Lane 1 is 10% input, lane 2 is Rabbit (DA1E) mAb IgG XP® Isotype Control #3900, lane 3 is Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb, and lane 4 is Axl (C89E7) Rabbit mAb #8661. Western blot analysis was performed using Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb (upper) and Axl (C89E7) Rabbit mAb #8661 (lower). Anti-rabbit IgG, HRP-linked Antibody #7074 was used as secondary antibody.

IP

IP

Immunoprecipitation of Phospho-Mer (Tyr749) protein from SK-MEL-5 cells treated with GAS6 (400 ng/ml) and H2O2 (4 mM) for 10 min. Lane 1 is 10% input, lane 2 is Rabbit (DA1E) mAb IgG XP® Isotype Control #3900, lane 3 is Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb, and lane 4 is Mer(D21F11) XP® Rabbit mAb #4319. Western blot analysis was performed using Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb (upper) and Mer (D21F11) XP® Rabbit mAb #4319 (lower). Anti-rabbit IgG, HRP-linked Antibody #7074 was used as secondary antibody.


IP

IP

Immunoprecipitation of Phospho-Tyro3 (Tyr681) protein from SK-MEL-5 cells treated with GAS6 (400 ng/ml) and H2O2 (4 mM) for 10 min. Lane 1 is 10% input, lane 2 is Rabbit (DA1E) mAb IgG XP® Isotype Control #3900, lane 3 is Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb, and lane 4 is Tyro 3 (D38C6) Rabbit mAb #5585. Western blot analysis was performed using Phospho-Axl (Tyr698)/Mer (Tyr749)/Tyro3 (Tyr681) Rabbit mAb (upper) and Tyro3 (D38C6) Rabbit mAb #5585 (lower). Anti-rabbit IgG, HRP-linked Antibody #7074 was used as secondary antibody.

Background

Axl, Mer and Tyro3 are three members of the TAM family receptor tyrosine kinase that share a common NCAM (neural adhesion molecule)-related extracellular domain and a conserved intracellular tyrosine kinase domain. These receptors bind common homologous vitamin K dependent protein GAS6 and protein S to activate down stream signaling pathway (1). TAM family receptors is involved in the development of immune, nervous, vascular and reproductive systems, autoimmune disease, cancer drug resistance and tumor immunity response (2-5). Axl Tyr698, Mer Tyr749 and Tyro3 Tyr681 are conserved autophosphorylation sites located at the activation loop of the tyrosine kinase domain. Phosphorylation at these sites is required for full kinase activation of each of the corresponding receptors (6,7).

  1. Rothlin, C.V. et al. (2015) Annu Rev Immunol 33, 355-91.
  2. Burstyn-Cohen, T. (2017) Int J Dev Biol 61, 215-224.
  3. Bellan, M. et al. (2016) Int J Mol Sci 17, .
  4. Schoumacher, M. and Burbridge, M. (2017) Curr Oncol Rep 19, 19.
  5. Akalu, Y.T. et al. (2017) Immunol Rev 276, 165-177.
  6. Ling, L. et al. (1996) J Biol Chem 271, 18355-62.
  7. Onken, J. et al. (2017) Oncotarget 8, 50403-50414.

Application References

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