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The Biochemical Journal|May 11, 2005
Autosomal dominant retinitis pigmentosa mutations in inosine 5'-monophosphate dehydrogenase type I disrupt nucleic acid bindingSarah E Mortimer, Lizbeth HedstromAdvances in Experimental Medicine and Biology|December 21, 2011
Towards a pathological mechanism for IMPDH1-linked retinitis pigmentosaDharia A McGrew, Lizbeth HedstromArchives of Biochemistry and Biophysics|December 8, 2004
A twisted base? The role of arginine in enzyme-catalyzed proton abstractionsYollete V Guillén Schlippe, Lizbeth HedstromBiochemistry|September 1, 2005
Is Arg418 the catalytic base required for the hydrolysis step of the IMP dehydrogenase reaction?Yollete V Guillén Schlippe, Lizbeth HedstromBiochemistry|December 14, 2005
Guanidine derivatives rescue the Arg418Ala mutation of Tritrichomonas foetus IMP dehydrogenaseYollete V Guillén Schlippe, Lizbeth HedstromChembiochem : a European Journal of Chemical Biology|July 19, 2012
Mushroom tyrosinase oxidizes tyrosine-rich sequences to allow selective protein functionalizationMarcus J C Long, Lizbeth HedstromBiochemistry|October 31, 2002
Crystal structure of a ternary complex of Tritrichomonas foetus inosine 5'-monophosphate dehydrogenase: NAD+ orients the active site loop for catalysisLu Gan, Gregory A Petsko, Lizbeth HedstromProtein Science : a Publication of the Protein Society|October 27, 2007
Short-lived protease serpin complexes: partial disruption of the rat trypsin active siteLu Liu, Nicole Mushero, Lizbeth Hedstrom, et al.Bioorganic & Medicinal Chemistry Letters|February 8, 2011
Specific biotinylation of IMP dehydrogenaseB Christopher Hoefler, Deviprasad R Gollapalli, Lizbeth HedstromThe Journal of Biological Chemistry|October 8, 2011
Kinetically controlled drug resistance: how Penicillium brevicompactum survives mycophenolic acidXin E Sun, Bjarne Gram Hansen, Lizbeth HedstromPageof 18