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G Vriend

Showing results (91-100 of 133) with videos related to

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Protein Engineering|December 1, 1996
Analysis of structural determinants of the stability of thermolysin-like proteases by molecular modelling and site-directed mutagenesisO R Veltman, G Vriend, P J Middelhoven, et al.
Biochemistry|May 16, 1998
A single calcium binding site is crucial for the calcium-dependent thermal stability of thermolysin-like proteasesO R Veltman, G Vriend, H J Berendsen, et al.
Cell|January 4, 2001
Synergism with the coactivator OBF-1 (OCA-B, BOB-1) is mediated by a specific POU dimer configurationA Tomilin, A Reményi, K Lins, et al.
Proteins|May 1, 1995
The essential dynamics of thermolysin: confirmation of the hinge-bending motion and comparison of simulations in vacuum and waterD M van Aalten, A Amadei, A B Linssen, et al.
Proteins|October 1, 1992
Effects of changing the interaction between subdomains on the thermostability of Bacillus neutral proteasesV G Eijsink, G Vriend, B van der Vinne, et al.
Receptors & Channels|July 17, 1998
The interaction of class B G protein-coupled receptors with their hormonesF Horn, R Bywater, G Krause, et al.
Proteins|November 5, 1997
Prediction of protein conformational freedom from distance constraintsB L de Groot, D M van Aalten, R M Scheek, et al.
European Journal of Biochemistry|February 15, 1994
The role of electrostatic charge in the membrane insertion of colicin A. Calculation and mutationJ H Lakey, M W Parker, J M González-Mañas, et al.
Protein Engineering|September 2, 1999
Improving macromolecular electrostatics calculationsJ E Nielsen, K V Andersen, B Honig, et al.
European Journal of Biochemistry|November 5, 1997
Mutational analysis of a surface area that is critical for the thermal stability of thermolysin-like proteasesO R Veltman, G Vriend, F Hardy, et al.
Pageof 14

Showing results (91-100 of 133) with videos related to

Sort By:
Pageof 14
Protein Engineering|December 1, 1996
Analysis of structural determinants of the stability of thermolysin-like proteases by molecular modelling and site-directed mutagenesisO R Veltman, G Vriend, P J Middelhoven, et al.
Biochemistry|May 16, 1998
A single calcium binding site is crucial for the calcium-dependent thermal stability of thermolysin-like proteasesO R Veltman, G Vriend, H J Berendsen, et al.
Cell|January 4, 2001
Synergism with the coactivator OBF-1 (OCA-B, BOB-1) is mediated by a specific POU dimer configurationA Tomilin, A Reményi, K Lins, et al.
Proteins|May 1, 1995
The essential dynamics of thermolysin: confirmation of the hinge-bending motion and comparison of simulations in vacuum and waterD M van Aalten, A Amadei, A B Linssen, et al.
Proteins|October 1, 1992
Effects of changing the interaction between subdomains on the thermostability of Bacillus neutral proteasesV G Eijsink, G Vriend, B van der Vinne, et al.
Receptors & Channels|July 17, 1998
The interaction of class B G protein-coupled receptors with their hormonesF Horn, R Bywater, G Krause, et al.
Proteins|November 5, 1997
Prediction of protein conformational freedom from distance constraintsB L de Groot, D M van Aalten, R M Scheek, et al.
European Journal of Biochemistry|February 15, 1994
The role of electrostatic charge in the membrane insertion of colicin A. Calculation and mutationJ H Lakey, M W Parker, J M González-Mañas, et al.
Protein Engineering|September 2, 1999
Improving macromolecular electrostatics calculationsJ E Nielsen, K V Andersen, B Honig, et al.
European Journal of Biochemistry|November 5, 1997
Mutational analysis of a surface area that is critical for the thermal stability of thermolysin-like proteasesO R Veltman, G Vriend, F Hardy, et al.
Pageof 14