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The Protein Journal|December 8, 2023
An ITPA Enzyme with Improved Substrate SelectivityNicholas E Burgis, Kandise VanWormer, Devin Robbins, et al.Archives of Biochemistry and Biophysics|July 28, 2023
Arginine-178 is an essential residue for ITPA functionNicholas E Burgis, Caitlin April, Kandise VanWormerJournal of Biomolecular Structure & Dynamics|March 5, 2020
Structural dynamics of inosine triphosphate pyrophosphatase (ITPA) protein and two clinically relevant mutants: molecular dynamics simulationsYao Houndonougbo, Bethany Pugh, Kandise VanWormer, et al.Journal of Biomedical Science|October 25, 2016
A disease spectrum for ITPA variation: advances in biochemical and clinical researchNicholas E BurgisChemical Research in Toxicology|November 21, 2007
The protein degradation response of Saccharomyces cerevisiae to classical DNA-damaging agentsNicholas E Burgis, Leona D SamsonThe Journal of Biological Chemistry|November 9, 2006
Substrate specificity of RdgB protein, a deoxyribonucleoside triphosphate pyrophosphohydrolaseNicholas E Burgis, Richard P CunninghamJournal of Bacteriology|May 6, 2003
Repair system for noncanonical purines in Escherichia coliNicholas E Burgis, Jason J Brucker, Richard P CunninghamOncology Reports|March 20, 2012
Evidence that aberrant protein metabolism contributes to chemoresistance in multiple myeloma cellsRichard K Sipes, Xue Xia, Brian S Lewis, et al.Biochimica Et Biophysica Acta|November 17, 2009
Quantitative in vitro and in vivo characterization of the human P32T mutant ITPaseGreg Herting, Katie Barber, Maria R Zappala, et al.Biochimie|June 18, 2013
Analysis of human ITPase nucleobase specificity by site-directed mutagenesisAmanda D Gall, Anthony Gall, Ashley C Moore, et al.Pageof 16