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Protein engineering

Showing results (171-180 of 2,099) with videos related to

Pageof 210
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Protein Engineering|July 6, 2000
Green fluorescent antibodies: novel in vitro toolsJ L Casey, A M Coley, L M Tilley, et al.
Protein Engineering|July 25, 2000
Engineering the active center of the 6-phospho-beta-galactosidase from Lactococcus lactisD Schulte, W Hengstenberg
Protein Engineering|March 5, 1999
Amino acid composition of protein termini are biased in different mannersI N Berezovsky, G T Kilosanidze, V G Tumanyan, et al.
Protein Engineering|March 5, 1999
Analysis of protein-protein interactions by mutagenesis: direct versus indirect effectsD E Otzen, A R Fersht
Protein Engineering|July 2, 1999
Molecular mechanics analysis of drug-resistant mutants of HIV proteaseI T Weber, R W Harrison
Protein Engineering|October 31, 2000
Domain exchange: chimeras of Thermus aquaticus DNA polymerase, Escherichia coli DNA polymerase I and Thermotoga neapolitana DNA polymeraseB Villbrandt, H Sobek, B Frey, et al.
Protein Engineering|July 1, 1988
Soluble, prolonged-acting insulin derivatives. III. Degree of protraction, crystallizability and chemical stability of insulins substituted in positions A21, B13, B23, B27 and B30J Markussen, I Diers, P Hougaard, et al.
Protein Engineering|July 1, 1988
Pattern matching methods in protein sequence comparison and structure predictionW R Taylor
Protein Engineering|September 1, 1988
Apomyoglobin as a molecular recognition surface: expression, reconstitution and crystallization of recombinant porcine myoglobin in Escherichia coliG Dodson, R E Hubbard, T J Oldfield, et al.
Protein Engineering|January 1, 1989
Modelling the polypeptide backbone with 'spare parts' from known protein structuresM Claessens, E Van Cutsem, I Lasters, et al.
Pageof 210

Showing results (171-180 of 2,099) with videos related to

Sort By:
Pageof 210
Protein Engineering|July 6, 2000
Green fluorescent antibodies: novel in vitro toolsJ L Casey, A M Coley, L M Tilley, et al.
Protein Engineering|July 25, 2000
Engineering the active center of the 6-phospho-beta-galactosidase from Lactococcus lactisD Schulte, W Hengstenberg
Protein Engineering|March 5, 1999
Amino acid composition of protein termini are biased in different mannersI N Berezovsky, G T Kilosanidze, V G Tumanyan, et al.
Protein Engineering|March 5, 1999
Analysis of protein-protein interactions by mutagenesis: direct versus indirect effectsD E Otzen, A R Fersht
Protein Engineering|July 2, 1999
Molecular mechanics analysis of drug-resistant mutants of HIV proteaseI T Weber, R W Harrison
Protein Engineering|October 31, 2000
Domain exchange: chimeras of Thermus aquaticus DNA polymerase, Escherichia coli DNA polymerase I and Thermotoga neapolitana DNA polymeraseB Villbrandt, H Sobek, B Frey, et al.
Protein Engineering|July 1, 1988
Soluble, prolonged-acting insulin derivatives. III. Degree of protraction, crystallizability and chemical stability of insulins substituted in positions A21, B13, B23, B27 and B30J Markussen, I Diers, P Hougaard, et al.
Protein Engineering|July 1, 1988
Pattern matching methods in protein sequence comparison and structure predictionW R Taylor
Protein Engineering|September 1, 1988
Apomyoglobin as a molecular recognition surface: expression, reconstitution and crystallization of recombinant porcine myoglobin in Escherichia coliG Dodson, R E Hubbard, T J Oldfield, et al.
Protein Engineering|January 1, 1989
Modelling the polypeptide backbone with 'spare parts' from known protein structuresM Claessens, E Van Cutsem, I Lasters, et al.
Pageof 210