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Physical Chemistry Chemical Physics : PCCP|June 10, 2011
Why not consider a spherical protein? Implications of backbone hydrogen bonding for protein structure and functionMichal Brylinski, Mu Gao, Jeffrey SkolnickThe Journal of Physical Chemistry. B|January 26, 2012
Further evidence for the likely completeness of the library of solved single domain protein structuresJeffrey Skolnick, Hongyi Zhou, Michal BrylinskiJournal of Structural Biology|September 21, 2010
The utility of geometrical and chemical restraint information extracted from predicted ligand-binding sites in protein structure refinementMichal Brylinski, Seung Yup Lee, Hongyi Zhou, et al.Proceedings of the National Academy of Sciences of the United States of America|October 7, 2009
The continuity of protein structure space is an intrinsic property of proteinsJeffrey Skolnick, Adrian K Arakaki, Seung Yup Lee, et al.Bioinformatics (Oxford, England)|January 19, 2010
PSiFR: an integrated resource for prediction of protein structure and functionShashi B Pandit, Michal Brylinski, Hongyi Zhou, et al.Frontiers in Genetics|June 27, 2013
Unleashing the power of meta-threading for evolution/structure-based function inference of proteinsMichal BrylinskiChemical Biology & Drug Design|August 18, 2017
Aromatic interactions at the ligand-protein interface: Implications for the development of docking scoring functionsMichal BrylinskiPlos Computational Biology|September 19, 2014
eMatchSite: sequence order-independent structure alignments of ligand binding pockets in protein modelsMichal BrylinskiJournal of Chemical Information and Modeling|November 1, 2013
Nonlinear scoring functions for similarity-based ligand docking and binding affinity predictionMichal BrylinskiMethods in Molecular Biology (Clifton, N.J.)|April 29, 2017
Local Alignment of Ligand Binding Sites in Proteins for Polypharmacology and Drug RepositioningMichal BrylinskiPageof 26