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Results: 1-6 |
Results: 6

Authors: Wehofsky, N Alisch, M Bordusa, F
Citation: N. Wehofsky et al., Synthesising protease-stable isopeptides by proteases: an efficient biocatalytic approach on the basis of a new type of substrate mimetics, CHEM COMMUN, (17), 2001, pp. 1602-1603

Authors: Wehofsky, N Kirbach, SW Haensler, M Wissmann, JD Bordusa, F
Citation: N. Wehofsky et al., Substrate mimetics and freezing strategy: A useful combination that broadens the scope of proteases for synthesis, ORG LETT, 2(14), 2000, pp. 2027-2030

Authors: Haensler, M Wissmann, HD Wehofsky, N
Citation: M. Haensler et al., Enzymatic formation of Glu-Xaa and Asp-Xaa bonds using Glu/Asp-specific endopeptidase from Bacillus licheniformis in frozen aqueous systems, J PEPT SCI, 6(8), 2000, pp. 366-371

Authors: Wehofsky, N Haensler, M Kirbach, SW Wissmann, JD Bordusa, F
Citation: N. Wehofsky et al., Effect of freezing on the enzymatic coupling of specific amino acid-containing peptide fragments, TETRAHEDR-A, 11(11), 2000, pp. 2421-2428

Authors: Wehofsky, N Wissmann, JD Alisch, M Bordusa, F
Citation: N. Wehofsky et al., Engineering of substrate mimetics as novel-type substrates for glutamic acid-specific endopeptidases: design, synthesis, and application, BBA-PROT ST, 1479(1-2), 2000, pp. 114-122

Authors: Wehofsky, N Bordusa, F
Citation: N. Wehofsky et F. Bordusa, Programming of enzyme specificity by substrate mimetics: investigations onthe Glu-specific V8 protease reveals a novel general principle of biocatalysis, FEBS LETTER, 443(2), 1999, pp. 220-224
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