Zachary A. Wood

University of Georgia, Athens, Athens, GA, United States 
Structural Enzymology
"Zachary Wood"
Mean distance: 9.31


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Stephen L. Hajduk research assistant UAB
P. Andrew (Andy) Karplus grad student 1996-2002 Cornell
 (Structure determination of the alkyl hydroperoxide reductase system from Salmonella typhimurium.)
Brian W. Matthews post-doc 2002-2007 University of Oregon
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Mandalasi M, Kim HW, Thieker D, et al. (2020) A terminal α3-galactose modification regulates an E3 ubiquitin ligase subunit in Toxoplasma gondii. The Journal of Biological Chemistry
Beattie NR, Keul ND, Hicks Sirmans TN, et al. (2019) Conservation of Atypical Allostery in UDP-Glucose Dehydrogenase. Acs Omega. 4: 16318-16329
Bester SM, Adipietro KA, Funk VL, et al. (2019) The structural and biochemical impact of monomerizing human acetylcholinesterase. Protein Science : a Publication of the Protein Society
Beattie NR, Pioso B, Sidlo AM, et al. (2018) Hysteresis and Allostery in Human UDP-Glucose Dehydrogenase Require a Flexible Protein Core. Biochemistry
Keul ND, Oruganty K, Schaper Bergman ET, et al. (2018) The entropic force generated by intrinsically disordered segments tunes protein function. Nature
Phillips RS, Buisman AA, Choi S, et al. (2018) The crystal structure of Proteus vulgaris tryptophan indole-lyase complexed with oxindolyl-L-alanine: implications for the reaction mechanism. Acta Crystallographica. Section D, Structural Biology. 74: 748-759
Kadirvelraj R, Yang JY, Sanders JH, et al. (2018) Human -acetylglucosaminyltransferase II substrate recognition uses a modular architecture that includes a convergent exosite. Proceedings of the National Academy of Sciences of the United States of America
Beattie NR, Keul ND, Sidlo AM, et al. (2016) Allostery and Hysteresis are coupled in human UDP-glucose dehydrogenase. Biochemistry
Sanchez JE, Gross PG, Goetze RW, et al. (2015) Evidence of Kinetic Cooperativity in Dimeric Ketopantoate Reductase from Staphylococcus aureus. Biochemistry. 54: 3360-9
Walsh RM, Polizzi SJ, Kadirvelraj R, et al. (2015) Man o' war mutation in UDP-α-D-xylose synthase favors the abortive catalytic cycle and uncovers a latent potential for hexamer formation Biochemistry. 54: 807-819
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