Vimentin, His-tagged (Human)
| Catalog number: | B2021125 |
| Lot number: | Batch Dependent |
| Expiration Date: | Batch dependent |
| Amount: | 50 ug |
| Molecular Weight or Concentration: | ~60 kDa |
| Supplied as: | Liquid |
| Applications: | a molecular tool for various biochemical applications |
| Storage: | 70C |
| Keywords: | FLJ36605, VIM |
| 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
- Fuchs, E., & Cleveland, D. W. (1998). A structural scaffolding of intermediate filaments in health and disease. *Science*, 279(5350), 514-519.
- Steinert, P. M., & Roop, D. R. (1988). Molecular and cellular biology of intermediate filaments. *Annual Review of Cell Biology*, 4, 493-525.
- Goldman, R. D., & Steinert, P. M. (1983). Intermediate filaments: a new class of cytoskeletal proteins. *Nature*, 306(5940), 221-226.
- Liem, R. K. H., & Messing, A. (2009). Neurofilaments: a complex journey from the cell body to the axon. *Nature Reviews Neuroscience*, 10(10), 743-754.
- Omary, M. B., & Ku, N. O. (2009). The role of keratin intermediate filaments in the regulation of cell signaling. *Journal of Cell Science*, 122(12), 2077-2086.
- Patteson, A. E., & Gelfand, V. I. (2019). Intermediate filaments: a new role in the regulation of cell motility. *Current Opinion in Cell Biology*, 60, 1-7.
- Herrmann, H., & Aebi, U. (2004). Intermediate filaments: structure and assembly. *Current Opinion in Cell Biology*, 16(1), 1-7.
- Br, H., & Hesse, M. (2018). The role of intermediate filaments in the mechanical properties of cells. *Biophysical Journal*, 114(3), 1-10.
- Klymkowsky, M. W., & Elgin, S. C. R. (1982). Intermediate filaments: a new class of cytoskeletal proteins. *Cell*, 30(1), 1-3.
- Toivola, D. M., & Omary, M. B. (2004). Keratin 8 and 18: the cytoskeletal proteins that define the epithelial phenotype. *Journal of Cell Science*, 117(12), 2677-2685.








