Epoxysuccinyl peptide-derived affinity labels for cathepsin B

Schaschke N, Assfalg-Machleidt I, Lassleben T, Sommerhoff CP, Moroder L, Machleidt W (2000)
FEBS LETTERS 482(1-2): 91-96.

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Schaschke N, Assfalg-Machleidt I, Lassleben T, Sommerhoff CP, Moroder L, Machleidt W. Epoxysuccinyl peptide-derived affinity labels for cathepsin B. FEBS LETTERS. 2000;482(1-2):91-96.
Schaschke, N., Assfalg-Machleidt, I., Lassleben, T., Sommerhoff, C. P., Moroder, L., & Machleidt, W. (2000). Epoxysuccinyl peptide-derived affinity labels for cathepsin B. FEBS LETTERS, 482(1-2), 91-96. doi:10.1016/S0014-5793(00)02047-0
Schaschke, N., Assfalg-Machleidt, I., Lassleben, T., Sommerhoff, C. P., Moroder, L., and Machleidt, W. (2000). Epoxysuccinyl peptide-derived affinity labels for cathepsin B. FEBS LETTERS 482, 91-96.
Schaschke, N., et al., 2000. Epoxysuccinyl peptide-derived affinity labels for cathepsin B. FEBS LETTERS, 482(1-2), p 91-96.
N. Schaschke, et al., “Epoxysuccinyl peptide-derived affinity labels for cathepsin B”, FEBS LETTERS, vol. 482, 2000, pp. 91-96.
Schaschke, N., Assfalg-Machleidt, I., Lassleben, T., Sommerhoff, C.P., Moroder, L., Machleidt, W.: Epoxysuccinyl peptide-derived affinity labels for cathepsin B. FEBS LETTERS. 482, 91-96 (2000).
Schaschke, Norbert, Assfalg-Machleidt, I, Lassleben, T, Sommerhoff, CP, Moroder, L, and Machleidt, W. “Epoxysuccinyl peptide-derived affinity labels for cathepsin B”. FEBS LETTERS 482.1-2 (2000): 91-96.
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Selective targeting of tumor and stromal cells by a nanocarrier system displaying lipidated cathepsin B inhibitor.
Mikhaylov G, Klimpel D, Schaschke N, Mikac U, Vizovisek M, Fonovic M, Turk V, Turk B, Vasiljeva O., Angew. Chem. Int. Ed. Engl. 53(38), 2014
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Strategies in the design of small-molecule fluorescent probes for peptidases.
Chen L, Li J, Du L, Li M., Med Res Rev 34(6), 2014
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Cysteine cathepsins: cellular roadmap to different functions.
Brix K, Dunkhorst A, Mayer K, Jordans S., Biochimie 90(2), 2008
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Cathepsin B is essential for regeneration of scratch-wounded normal human epidermal keratinocytes.
Buth H, Luigi Buttigieg P, Ostafe R, Rehders M, Dannenmann SR, Schaschke N, Stark HJ, Boukamp P, Brix K., Eur. J. Cell Biol. 86(11-12), 2007
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Design, synthesis, and evaluation of in vivo potency and selectivity of epoxysuccinyl-based inhibitors of papain-family cysteine proteases.
Sadaghiani AM, Verhelst SH, Gocheva V, Hill K, Majerova E, Stinson S, Joyce JA, Bogyo M., Chem. Biol. 14(5), 2007
PMID: 17524981
Chemical tools for activity-based proteomics.
Hagenstein MC, Sewald N., J. Biotechnol. 124(1), 2006
PMID: 16442651
Synthesis and antiplasmodial activity of a cysteine protease-inhibiting biotinylated aziridine-2,3-dicarboxylate.
Gelhaus C, Vicik R, Hilgenfeld R, Schmidt CL, Leippe M, Schirmeister T., Biol. Chem. 385(5), 2004
PMID: 15196005
Surface cathepsin B protects cytotoxic lymphocytes from self-destruction after degranulation.
Balaji KN, Schaschke N, Machleidt W, Catalfamo M, Henkart PA., J. Exp. Med. 196(4), 2002
PMID: 12186841
Epoxysuccinyl peptide-derived cathepsin B inhibitors: modulating membrane permeability by conjugation with the C-terminal heptapeptide segment of penetratin.
Schaschke N, Deluca D, Assfalg-Machleidt I, Hohneke C, Sommerhoff CP, Machleidt W., Biol. Chem. 383(5), 2002
PMID: 12108551

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