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Emerging Topics in Life Sciences|February 2, 2021
Integrating the whole from the sum of the parts: vignettes in computational biologyJeffrey SkolnickCurrent Opinion in Structural Biology|March 10, 2006
In quest of an empirical potential for protein structure predictionJeffrey SkolnickThe Journal of Chemical Physics|September 17, 2016
Perspective: On the importance of hydrodynamic interactions in the subcellular dynamics of macromoleculesJeffrey SkolnickJournal of Chemical Information and Modeling|September 22, 2010
Comprehensive structural and functional characterization of the human kinome by protein structure modeling and ligand virtual screeningMichal Brylinski, Jeffrey SkolnickProceedings of the National Academy of Sciences of the United States of America|February 23, 2012
The distribution of ligand-binding pockets around protein-protein interfaces suggests a general mechanism for pocket formationMu Gao, Jeffrey SkolnickProceedings of the National Academy of Sciences of the United States of America|January 18, 2005
The protein structure prediction problem could be solved using the current PDB libraryYang Zhang, Jeffrey SkolnickJournal of Computational Chemistry|January 15, 2005
A scoring function for docking ligands to low-resolution protein structuresEckart Bindewald, Jeffrey SkolnickBiopolymers|December 4, 2003
Application of statistical potentials to protein structure refinement from low resolution ab initio modelsHui Lu, Jeffrey SkolnickProceedings of the National Academy of Sciences of the United States of America|May 6, 2004
Automated structure prediction of weakly homologous proteins on a genomic scaleYang Zhang, Jeffrey SkolnickNucleic Acids Research|April 26, 2005
TM-align: a protein structure alignment algorithm based on the TM-scoreYang Zhang, Jeffrey SkolnickPageof 29