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The Biochemical Journal|August 15, 1992
A large decrease in heat-shock-induced proteolysis after tryptophan starvation leads to increased expression of phage lambda lysozyme cloned in Escherichia coliP Soumillion, J FastrezProtein Engineering|June 5, 1998
Incorporation of 1,2,4-triazole-3-alanine into a mutant of phage lambda lysozyme containing a single histidineP Soumillion, J FastrezCurrent Opinion in Biotechnology|September 12, 2001
Novel concepts for selection of catalytic activityP Soumillion, J FastrezNature Biotechnology|January 27, 1999
Engineering a regulatable enzyme for homogeneous immunoassaysD Legendre, P Soumillion, J FastrezFEBS Letters|November 11, 1999
Histidine modification and mutagenesis point to the involvement of a large conformational change in the mechanism of action of phage lambda lysozymeC Evrard, J Fastrez, P SoumillionChembiochem : a European Journal of Chemical Biology|February 6, 2002
Selection of metalloenzymes by catalytic activity using phage display and catalytic elutionI Ponsard, M Galleni, P Soumillion, et al.Protein Engineering|May 1, 1995
Biosynthetic incorporation of 7-azatryptophan into the phage lambda lysozyme: estimation of tryptophan accessibility, effect on enzymatic activity and protein stabilityP Soumillion, L Jespers, J Vervoort, et al.Applied Biochemistry and Biotechnology|May 1, 1994
Phage display of enzymes and in vitro selection for catalytic activityP Soumillion, L Jespers, M Bouchet, et al.Journal of Molecular Biology|April 8, 1994
Selection of beta-lactamase on filamentous bacteriophage by catalytic activityP Soumillion, L Jespers, M Bouchet, et al.European Journal of Biochemistry|September 15, 1983
On the stability of tetrahedral intermediates within the active sites of serine and cysteine proteasesJ FastrezPageof 5