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Biochemistry|June 13, 2015
Dual Allosteric Inhibitors Jointly Modulate Protein Structure and Dynamics in the Hepatitis C Virus PolymeraseJodian A Brown, Ian F ThorpeJournal of Computational Chemistry|November 19, 2016
Molecular simulations to delineate functional conformational transitions in the HCV polymeraseEster Sesmero, Jodian A Brown, Ian F ThorpeBiophysical Journal|April 12, 2015
Allosteric inhibitors have distinct effects, but also common modes of action, in the HCV polymeraseBrittny C Davis, Jodian A Brown, Ian F ThorpeVirus Research|June 6, 2016
Computational predictions suggest that structural similarity in viral polymerases may lead to comparable allosteric binding sitesJodian A Brown, Marie V Espiritu, Joel Abraham, et al.Viruses|July 21, 2015
Using the Hepatitis C Virus RNA-Dependent RNA Polymerase as a Model to Understand Viral Polymerase Structure, Function and DynamicsEster Sesmero, Ian F ThorpeThe Journal of Chemical Physics|January 21, 2006
Evaluating the conformational entropy of macromolecules using an energy decomposition approachY Zenmei Ohkubo, Ian F ThorpeProteins|August 3, 2012
Thumb inhibitor binding eliminates functionally important dynamics in the hepatitis C virus RNA polymeraseBrittny C Davis, Ian F ThorpeProceedings of the National Academy of Sciences of the United States of America|May 10, 2007
Molecular evolution of affinity and flexibility in the immune systemIan F Thorpe, Charles L BrooksProteins|September 24, 2004
The coupling of structural fluctuations to hydride transfer in dihydrofolate reductaseIan F Thorpe, Charles L BrooksThe Journal of Physical Chemistry. A|June 10, 2017
Using Structural Kinetic Modeling To Identify Key Determinants of Stability in Reaction NetworksNicole J Carbonaro, Ian F ThorpePageof 3