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Protein engineering

Showing results (651-660 of 2,099) with videos related to

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Protein Engineering|March 1, 1995
The position of the structurally autonomous kringle 2 domain influences the functional features of tissue-type plasminogen activatorA H Bakker, E F Rehberg, K R Marotti, et al.
Protein Engineering|August 1, 1993
Global folding of proteins using a limited number of distance constraintsM J Smith-Brown, D Kominos, R M Levy
Protein Engineering|April 1, 1995
DNA recognition and superstructure formation by helix-turn-helix proteinsM Suzuki, N Yagi, M Gerstein
Protein Engineering|April 1, 1995
Contact pattern-induced pair potentials for protein fold recognitionJ Selbig
Protein Engineering|February 1, 1993
Engineering cysteine mutants to obtain crystallographic phases with a cutinase from Fusarium solani pisiC Martinez, P de Geus, P Stanssens, et al.
Protein Engineering|February 1, 1993
Lysines 72, 80 and 213 and aspartic acid 210 of the Lactococcus lactis LacR repressor are involved in the response to the inducer tagatose-6-phosphate leading to induction of lac operon expressionR J van Rooijen, K J Dechering, C Niek, et al.
Protein Engineering|February 1, 1993
Engineering cytochrome P-450cam to increase the stereospecificity and coupling of aliphatic hydroxylationP J Loida, S G Sligar
Protein Engineering|January 1, 1993
Unraveling the mechanism of protein folding: new tricks for an old problemJ T Lecomte, C R Matthews
Protein Engineering|January 1, 1993
The random peptide library-assisted engineering of a C-terminal affinity peptide, useful for the detection and purification of a functional Ig Fv fragmentT G Schmidt, A Skerra
Protein Engineering|January 1, 1993
A catalytically-impaired class A beta-lactamase: 2 A crystal structure and kinetics of the Bacillus licheniformis E166A mutantJ R Knox, P C Moews, W A Escobar, et al.
Pageof 210

Showing results (651-660 of 2,099) with videos related to

Sort By:
Pageof 210
Protein Engineering|March 1, 1995
The position of the structurally autonomous kringle 2 domain influences the functional features of tissue-type plasminogen activatorA H Bakker, E F Rehberg, K R Marotti, et al.
Protein Engineering|August 1, 1993
Global folding of proteins using a limited number of distance constraintsM J Smith-Brown, D Kominos, R M Levy
Protein Engineering|April 1, 1995
DNA recognition and superstructure formation by helix-turn-helix proteinsM Suzuki, N Yagi, M Gerstein
Protein Engineering|April 1, 1995
Contact pattern-induced pair potentials for protein fold recognitionJ Selbig
Protein Engineering|February 1, 1993
Engineering cysteine mutants to obtain crystallographic phases with a cutinase from Fusarium solani pisiC Martinez, P de Geus, P Stanssens, et al.
Protein Engineering|February 1, 1993
Lysines 72, 80 and 213 and aspartic acid 210 of the Lactococcus lactis LacR repressor are involved in the response to the inducer tagatose-6-phosphate leading to induction of lac operon expressionR J van Rooijen, K J Dechering, C Niek, et al.
Protein Engineering|February 1, 1993
Engineering cytochrome P-450cam to increase the stereospecificity and coupling of aliphatic hydroxylationP J Loida, S G Sligar
Protein Engineering|January 1, 1993
Unraveling the mechanism of protein folding: new tricks for an old problemJ T Lecomte, C R Matthews
Protein Engineering|January 1, 1993
The random peptide library-assisted engineering of a C-terminal affinity peptide, useful for the detection and purification of a functional Ig Fv fragmentT G Schmidt, A Skerra
Protein Engineering|January 1, 1993
A catalytically-impaired class A beta-lactamase: 2 A crystal structure and kinetics of the Bacillus licheniformis E166A mutantJ R Knox, P C Moews, W A Escobar, et al.
Pageof 210