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Scientific Reports|July 9, 2020
A physics-based energy function allows the computational redesign of a PDZ domainVaitea Opuu, Young Joo Sun, Titus Hou, et al.Plos Computational Biology|January 10, 2020
Adaptive landscape flattening allows the design of both enzyme: Substrate binding and catalytic powerVaitea Opuu, Giuliano Nigro, Thomas Gaillard, et al.Journal of Chemical Theory and Computation|November 22, 2015
What Is the Dielectric Constant of a Protein When Its Backbone Is Fixed?Thomas SimonsonPhotosynthesis Research|April 30, 2008
Dielectric relaxation in proteins: the computational perspectiveThomas SimonsonProceedings of the National Academy of Sciences of the United States of America|May 16, 2002
Gaussian fluctuations and linear response in an electron transfer proteinThomas SimonsonCurrent Pharmaceutical Design|November 23, 2012
Protein: ligand recognition: simple models for electrostatic effectsThomas SimonsonMedecine Sciences : M/S|June 30, 2005
[The >: can one predict the structure of proteins?]Thomas SimonsonJournal of Computational Chemistry|September 17, 2013
Computational protein design: the Proteus software and selected applicationsThomas Simonson, Thomas Gaillard, David Mignon, et al.BMC Bioinformatics|October 11, 2008
Homology modelling of protein-protein complexes: a simple method and its possibilities and limitationsGuillaume Launay, Thomas SimonsonBiochemistry|November 27, 2008
Binding of tetracyclines to elongation factor Tu, the Tet repressor, and the ribosome: a molecular dynamics simulation studyAlexey Aleksandrov, Thomas SimonsonPageof 16