Anti-CTNNB1 (C-Terminus) Antibody
| Catalog number: | B2021839 |
| Lot number: | Batch Dependent |
| Expiration Date: | Batch dependent |
| Amount: | 50 ul |
| Molecular Weight or Concentration: | 85.497 kDa |
| Supplied as: | Liquid |
| Applications: | a molecular tool for various biochemical applications |
| Storage: | 2-8C |
| Keywords: | Anti-beta-catenin Antibody (C-Terminus), Anti-Catenin Antibody (C-Terminus), Anti-CTNNB1 Antibody (C-terminal region), CTNNB1 C-Terminus Antibody, C-Terminal beta-catenin Antibody, Anti-CTNNB1 C-terminal Antibody |
| Grade: | Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity>18 M-cm) and are filtered through 0.22 um. |
References
- Kahn, M. (2014). Can we safely target the Wnt pathway? Nature Reviews Drug Discovery, 13(7), 513-532.
- Clevers, H. (2013). The cancer stem cell: premises, promises and challenges. Nature Reviews Molecular Biochemistry, 14(2), 111-124.
- Nusse, R., & Clevers, H. (2017). Wnt/-catenin signaling, disease, and emerging therapeutic modalities. Cell, 169(6), 985-999.
- Huber, A. H., & Weis, W. I. (2001). The structure of the -catenin/TCF complex and its implications for the Wnt signaling pathway. Nature, 410(6824), 1001-1005.
- MacDonald, B. T., Tamai, K., & He, X. (2009). Wnt/-catenin signaling: components, mechanisms, and diseases. Developmental Cell, 17(1), 9-26.
- Liu, C., Li, Y., Semenov, M., et al. (2002). Control of -catenin phosphorylation/degradation by a dual-kinase mechanism. Cell, 108(6), 837-847.
- Kim, H. J., & Kim, J. H. (2015). The role of -catenin in cancer stem cells. Journal of Cancer Research and Clinical Oncology, 141(1), 1-10.
- Huber, A. H., & Weis, W. I. (2001). The structure of the -catenin/TCF complex and its implications for the Wnt signaling pathway. Nature, 410(6824), 1001-1005.
- Gumbiner, B. M. (2005). Regulation of cadherin adhesion by catenins. Current Opinion in Biochemistry, 17(5), 550-557.
- Molenaar, M., van de Wetering, M., & Clevers, H. (2002). TCF/LEF factor function is regulated by the Wnt pathway in a context-dependent manner. Journal of Cell Science, 115(4), 785-794.








