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Protein engineering

Showing results (1011-1020 of 1,995) with videos related to

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Protein Engineering|May 9, 2001
Do domain interactions of glycosyl hydrolases from Clostridium thermocellum contribute to protein thermostability?I A Kataeva, D L Blum, X L Li, et al.
Protein Engineering|August 28, 2001
A fast method for predicting amino acid mutations that lead to unfoldingJ D Wright, C Lim
Protein Engineering|August 28, 2001
Thermostabilization by replacement of specific residues with lysine in a Bacillus alkaline cellulase: building a structural model and implications of newly formed double intrahelical salt bridgesT Ozawa, Y Hakamada, Y Hatada, et al.
Protein Engineering|December 7, 2002
Engineering streptococcal protein G for increased alkaline stabilitySusanne Gülich, Martin Linhult, Stefan Ståhl, et al.
Protein Engineering|October 5, 2002
Quantifying the accessible surface area of protein residues in their local environmentUttamkumar Samanta, Ranjit P Bahadur, Pinak Chakrabarti
Protein Engineering|October 5, 2002
Conserved water molecules in MHC class-I molecules and their putative structural and functional rolesKoji Ogata, Shoshana J Wodak
Protein Engineering|November 29, 2002
Prediction of protein residue contacts with a PDB-derived likelihood matrixMichael S Singer, Gert Vriend, Robert P Bywater
Protein Engineering|November 29, 2002
Free-energy contributions to complex formation between botulinum neurotoxin type B and synaptobrevin fragmentMark A Olson, Timothy L Armendinger
Protein Engineering|June 2, 2000
Improvement in the efficiency of formyl transfer of a GAR transformylase hybrid enzymeA E Nixon, S J Benkovic
Protein Engineering|June 2, 2000
Structure of the Malpha2-3 toxin alpha antibody-antigen complex: combination of modelling with functional mapping experimental resultsC Tenette-Souaille, J C Smith
Pageof 200

Showing results (1011-1020 of 1,995) with videos related to

Sort By:
Pageof 200
Protein Engineering|May 9, 2001
Do domain interactions of glycosyl hydrolases from Clostridium thermocellum contribute to protein thermostability?I A Kataeva, D L Blum, X L Li, et al.
Protein Engineering|August 28, 2001
A fast method for predicting amino acid mutations that lead to unfoldingJ D Wright, C Lim
Protein Engineering|August 28, 2001
Thermostabilization by replacement of specific residues with lysine in a Bacillus alkaline cellulase: building a structural model and implications of newly formed double intrahelical salt bridgesT Ozawa, Y Hakamada, Y Hatada, et al.
Protein Engineering|December 7, 2002
Engineering streptococcal protein G for increased alkaline stabilitySusanne Gülich, Martin Linhult, Stefan Ståhl, et al.
Protein Engineering|October 5, 2002
Quantifying the accessible surface area of protein residues in their local environmentUttamkumar Samanta, Ranjit P Bahadur, Pinak Chakrabarti
Protein Engineering|October 5, 2002
Conserved water molecules in MHC class-I molecules and their putative structural and functional rolesKoji Ogata, Shoshana J Wodak
Protein Engineering|November 29, 2002
Prediction of protein residue contacts with a PDB-derived likelihood matrixMichael S Singer, Gert Vriend, Robert P Bywater
Protein Engineering|November 29, 2002
Free-energy contributions to complex formation between botulinum neurotoxin type B and synaptobrevin fragmentMark A Olson, Timothy L Armendinger
Protein Engineering|June 2, 2000
Improvement in the efficiency of formyl transfer of a GAR transformylase hybrid enzymeA E Nixon, S J Benkovic
Protein Engineering|June 2, 2000
Structure of the Malpha2-3 toxin alpha antibody-antigen complex: combination of modelling with functional mapping experimental resultsC Tenette-Souaille, J C Smith
Pageof 200