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Proceedings of the National Academy of Sciences of the United States of America|January 15, 1993
On the nature of the protein folding codeS RackovskyThe Journal of Physical Chemistry. B|January 27, 2026
The Spatial Distribution of Local Mobility in Folded ProteinsS RackovskyBiochemistry|December 12, 2002
Proline cis-trans isomerization and protein foldingWilliam J Wedemeyer, Ervin Welker, Harold A ScheragaBiochemistry|May 14, 2003
Proline isomerization in bovine pancreatic ribonuclease A. 2. Folding conditionsRajiv Bhat, William J Wedemeyer, Harold A ScheragaFEBS Letters|September 5, 2006
Correlation of folding kinetics with the number and isomerization states of prolines in three homologous proteins of the RNase familyLovy Pradeep, Hang-Cheol Shin, Harold A ScheragaThe Journal of Physical Chemistry. B|January 5, 2007
Molecular dynamics with the United-residue force field: ab initio folding simulations of multichain proteinsAna V Rojas, Adam Liwo, Harold A ScheragaJournal of Chemical Theory and Computation|October 23, 2012
Determination of effective potentials for the stretching of C(α) ⋯ C(α) virtual bonds in polypeptide chains for coarse-grained simulations of proteins from ab initio energy surfaces of N-methylacetamide and N-acetylpyrrolidineAdam K Sieradzan, Harold A Scheraga, Adam LiwoMethods in Molecular Biology (Clifton, N.J.)|April 5, 2019
Beyond Supersecondary Structure: Physics-Based Sequence AlignmentS RackovskyProceedings of the National Academy of Sciences of the United States of America|April 28, 2010
Global characteristics of protein sequences and their implicationsS RackovskyMethods in Molecular Biology (Clifton, N.J.)|September 19, 2012
Beyond supersecondary structure: the global properties of protein sequencesS RackovskyPageof 26