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The Journal of Physical Chemistry Letters|February 6, 2014
Mass Modulation of Protein Dynamics Associated with Barrier Crossing in Purine Nucleoside PhosphorylaseDimitri Antoniou, Xiaoxia Ge, Vern L Schramm, et al.Journal of the American Chemical Society|December 2, 2004
Promoting vibrations in human purine nucleoside phosphorylase. A molecular dynamics and hybrid quantum mechanical/molecular mechanical studySara Núñez, Dimitri Antoniou, Vern L Schramm, et al.Biochemistry|December 15, 2015
Hydride Transfer in DHFR by Transition Path Sampling, Kinetic Isotope Effects, and Heavy Enzyme StudiesZhen Wang, Dimitri Antoniou, Steven D Schwartz, et al.The Journal of Physical Chemistry. B|November 17, 2010
Slow conformational motions that favor sub-picosecond motions important for catalysisJ R Exequiel T Pineda, Dimitri Antoniou, Steven D SchwartzThe Journal of Physical Chemistry. B|December 20, 2022
Connecting Conformational Motions to Rapid Dynamics in Human Purine Nucleoside PhosphorylaseClara F Frost, Sree Ganesh Balasubramani, Dimitri Antoniou, et al.The Journal of Physical Chemistry. A|January 13, 2006
Insight into catalytically relevant correlated motions in human purine nucleoside phosphorylaseSara Núñez, Corin Wing, Dimitri Antoniou, et al.European Journal of Biochemistry|June 27, 2002
Barrier passage and protein dynamics in enzymatically catalyzed reactionsDimitri Antoniou, Stavros Caratzoulas, C Kalyanaraman, et al.Proceedings of the National Academy of Sciences of the United States of America|June 20, 2018
Inverse enzyme isotope effects in human purine nucleoside phosphorylase with heavy asparagine labelsRajesh K Harijan, Ioanna Zoi, Dimitri Antoniou, et al.Proceedings of the National Academy of Sciences of the United States of America|June 7, 2017
Catalytic-site design for inverse heavy-enzyme isotope effects in human purine nucleoside phosphorylaseRajesh K Harijan, Ioanna Zoi, Dimitri Antoniou, et al.The Journal of Physical Chemistry. B|February 5, 2015
Enzyme homologues have distinct reaction paths through their transition statesIoanna Zoi, Matthew W Motley, Dimitri Antoniou, et al.Pageof 19