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Protein engineering

Showing results (981-990 of 2,099) with videos related to

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Protein Engineering|June 1, 1994
Engineering surface charges in a subtilisin: the effects on electrophoretic and ion-exchange behaviourM R Egmond, W P Antheunisse, C J van Bemmel, et al.
Protein Engineering|June 1, 1994
Human-engineered monoclonal antibodies retain full specific binding activity by preserving non-CDR complementarity-modulating residuesG M Studnicka, S Soares, M Better, et al.
Protein Engineering|April 5, 2002
Design of ET(B) receptor agonists: NMR spectroscopic and conformational studies of ET7-21[Leu7, Aib11, Cys(Acm)15]Chandralal M Hewage, Lu Jiang, John A Parkinson, et al.
Protein Engineering|April 5, 2002
Molecular dynamics simulations as a tool for improving protein stabilityMariël G Pikkemaat, Antonius B M Linssen, Herman J C Berendsen, et al.
Protein Engineering|October 1, 1994
Similarities between protein 3-D structuresU Lessel, D Schomburg
Protein Engineering|October 1, 1994
An unequivocal example of cysteine proteinase activity affected by multiple electrostatic interactionsM A Taylor, K C Baker, I F Connerton, et al.
Protein Engineering|October 1, 1994
Introduction of a histidine tail at the N-terminus of a secretory protein expressed in Escherichia coliA Seidler
Protein Engineering|May 1, 1997
Spectroscopic properties of an engineered maltose binding proteinG Gilardi, G Mei, N Rosato, et al.
Protein Engineering|May 1, 1997
Recognition of phage-expressed peptides containing Asx-Pro sequences by monoclonal antibodies produced against Plasmodium falciparum circumsporozoite proteinD R Wilson, R A Wirtz, B B Finlay
Protein Engineering|May 1, 1997
Importance of a conserved phenylalanine-35 of cytochrome b5 to the protein's stability and redox potentialP Yao, Y Xie, Y H Wang, et al.
Pageof 210

Showing results (981-990 of 2,099) with videos related to

Sort By:
Pageof 210
Protein Engineering|June 1, 1994
Engineering surface charges in a subtilisin: the effects on electrophoretic and ion-exchange behaviourM R Egmond, W P Antheunisse, C J van Bemmel, et al.
Protein Engineering|June 1, 1994
Human-engineered monoclonal antibodies retain full specific binding activity by preserving non-CDR complementarity-modulating residuesG M Studnicka, S Soares, M Better, et al.
Protein Engineering|April 5, 2002
Design of ET(B) receptor agonists: NMR spectroscopic and conformational studies of ET7-21[Leu7, Aib11, Cys(Acm)15]Chandralal M Hewage, Lu Jiang, John A Parkinson, et al.
Protein Engineering|April 5, 2002
Molecular dynamics simulations as a tool for improving protein stabilityMariël G Pikkemaat, Antonius B M Linssen, Herman J C Berendsen, et al.
Protein Engineering|October 1, 1994
Similarities between protein 3-D structuresU Lessel, D Schomburg
Protein Engineering|October 1, 1994
An unequivocal example of cysteine proteinase activity affected by multiple electrostatic interactionsM A Taylor, K C Baker, I F Connerton, et al.
Protein Engineering|October 1, 1994
Introduction of a histidine tail at the N-terminus of a secretory protein expressed in Escherichia coliA Seidler
Protein Engineering|May 1, 1997
Spectroscopic properties of an engineered maltose binding proteinG Gilardi, G Mei, N Rosato, et al.
Protein Engineering|May 1, 1997
Recognition of phage-expressed peptides containing Asx-Pro sequences by monoclonal antibodies produced against Plasmodium falciparum circumsporozoite proteinD R Wilson, R A Wirtz, B B Finlay
Protein Engineering|May 1, 1997
Importance of a conserved phenylalanine-35 of cytochrome b5 to the protein's stability and redox potentialP Yao, Y Xie, Y H Wang, et al.
Pageof 210