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Current Opinion in Structural Biology|January 23, 2010
Cooperativity and protein folding ratesJohn J Portman
The Journal of Chemical Physics|March 17, 2016
Comparing allosteric transitions in the domains of calmodulin through coarse-grained simulationsPrithviraj Nandigrami, John J Portman
Proceedings of the National Academy of Sciences of the United States of America|February 5, 2009
Inherent flexibility determines the transition mechanisms of the EF-hands of calmodulinSwarnendu Tripathi, John J Portman
The Journal of Physical Chemistry. B|August 22, 2013
Allostery and folding of the N-terminal receiver domain of protein NtrCSwarnendu Tripathi, John J Portman
The Journal of Chemical Physics|March 17, 2016
Coarse-grained molecular simulations of allosteric cooperativityPrithviraj Nandigrami, John J Portman
Proceedings of the National Academy of Sciences of the United States of America|August 6, 2008
Capillarity-like growth of protein folding nucleiXianghong Qi, John J Portman
Proceedings of the National Academy of Sciences of the United States of America|June 16, 2007
Excluded volume, local structural cooperativity, and the polymer physics of protein folding ratesXianghong Qi, John J Portman
The Journal of Chemical Physics|August 25, 2011
Conformational flexibility and the mechanisms of allosteric transitions in topologically similar proteinsSwarnendu Tripathi, John J Portman
The Journal of Physical Chemistry. B|April 2, 2008
Variationally determined free energy profiles for structural models of proteins: characteristic temperatures for folding and trappingTongye Shen, Chenghang Zong, John J Portman, et al.
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