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Protein Engineering|August 1, 1993
Protein fold refinement: building models from idealized folds using motif constraints and multiple sequence dataW R TaylorProtein Engineering|August 1, 1993
Pseudomonas glumae lipase: increased proteolytic stability by protein engineeringL G Frenken, M R Egmond, A M Batenburg, et al.Protein Engineering|April 5, 2002
Mapping of a hapten-binding site: molecular modeling and site-directed mutagenesis study of an anti-atrazine antibodyWien Kusharyoto, Jürgen Pleiss, Till T Bachmann, et al.Protein Engineering|April 5, 2002
A recombinant bacterial cell surface (S-layer)-major birch pollen allergen-fusion protein (rSbsC/Bet v1) maintains the ability to self-assemble into regularly structured monomolecular lattices and the functionality of the allergenAndreas Breitwieser, Eva M Egelseer, Dieter Moll, et al.Protein Engineering|June 1, 1993
The SBASE domain library: a collection of annotated protein segmentsS Pongor, V Skerl, M Cserzö, et al.Protein Engineering|December 1, 1994
GRAFTER: a computational aid for the design of novel proteinsD P Hearst, F E CohenProtein Engineering|December 1, 1994
Protein engineering of the relative specificity of glucoamylase from Aspergillus awamori based on sequence similarities between starch-degrading enzymesM R Sierks, B SvenssonProtein Engineering|November 1, 1994
Reading-frame shift in Saccharomyces glucoamylases restores catalytic base, extends sequence and improves alignment with other glucoamylasesB Henrissat, P M Coutinho, P J ReillyProtein Engineering|November 1, 1994
Families of protein with similar total structure identified using statistical geometryM A HadwigerProtein Engineering|November 1, 1994
On the use of machine learning to identify topological rules in the packing of beta-strandsR D King, D A Clark, J Shirazi, et al.Pageof 200