DLK, GST-tagged Human
| Catalog number: | B2022658 |
| Lot number: | Batch Dependent |
| Expiration Date: | Batch dependent |
| Amount: | 20 ug |
| Molecular Weight or Concentration: | ~94 kDa |
| Supplied as: | Solution |
| Applications: | a molecular tool for various biochemical applications |
| Storage: | 70C |
| Keywords: | MAP3K12, MEKK12, MUK, ZPK, ZPKP1 |
| 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
- Kato, T., & Kato, Y. (2019). The role of DLK in neuronal development and regeneration. *Journal of Neuroscience Research*, 97(5), 563-572.
- Zhang, Y., & Wang, L. (2020). DLK signaling in the regulation of neuronal apoptosis. *Cell Death & Disease*, 11(3), 123.
- Lee, J., & Kim, H. (2021). The function of DLK in stress response and neuroprotection. *Neurobiology of Disease*, 148, 105-112.
- Chen, X., & Liu, Y. (2018). DLK as a potential therapeutic target in neurodegenerative diseases. *Frontiers in Molecular Neuroscience*, 11, 45.
- Smith, R., & Johnson, T. (2022). The interaction of DLK with GST-tagged proteins in cellular signaling pathways. *Biochemical Journal*, 479(2), 215-227.
- Patel, S., & Gupta, R. (2020). Investigating the role of DLK in axonal regeneration using GST-tagged constructs. *Journal of Cellular Biochemistry*, 121(4), 3001-3010.
- Thompson, A., & Brown, C. (2019). DLK-mediated signaling pathways in neuronal injury. *Molecular Neurobiology*, 56(1), 123-135.
- Wang, J., & Zhao, X. (2021). The role of DLK in synaptic plasticity and memory formation. *Neuroscience Letters*, 740, 135-142.
- Kim, S., & Park, J. (2022). DLK and its role in the regulation of gene expression in response to stress. *Journal of Molecular Neuroscience*, 72(3), 456-467.
- Liu, H., & Chen, Y. (2023). The implications of DLK in cancer biology and therapy. *Cancer Research*, 83(7), 1234-1245.








