A Proteomic Protocol to Identify Physiological Substrates of Pro-protein Convertases
Author:
Publisher
Humana Press
Link
http://link.springer.com/content/pdf/10.1007/978-1-61779-204-5_18.pdf
Reference12 articles.
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2. Khatib, A. M., Siegfried, G., Chretien, M., Metrakos, P., and Seidah, N. G. (2002) Proprotein convertases in tumor progression and malignancy: Novel targets in cancer therapy Am J Pathol 160, 1921–35.
3. Taylor, N. A., Van De Ven, W. J., and Creemers, J. W. (2003) Curbing activation: Proprotein convertases in homeostasis and pathology FASEB J 17, 1215–27.
4. Nakayama, K., Watanabe, T., Nakagawa, T., Kim, W. S., Nagahama, M., Hosaka, M., Hatsuzawa, K., Kondoh-Hashiba, K., and Murakami, K. (1992) Consensus sequence for precursor processing at mono-arginyl sites. Evidence for the involvement of a Kex2-like endoprotease in precursor cleavages at both dibasic and mono-arginyl sites J Biol Chem 267, 16335–40.
5. Watanabe, T., Nakagawa, T., Ikemizu, J., Nagahama, M., Murakami, K., and Nakayama, K. (1992) Sequence requirements for precursor cleavage within the constitutive secretory pathway J Biol Chem 267, 8270–4.
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