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Journal of Medicinal Chemistry|August 16, 2018
Resurrection Biology: Aged Acetylcholinesterase Brought Back to LifeDaniel M Quinn
Organic Letters|February 16, 2013
Kinetic assessment of N-methyl-2-methoxypyridinium species as phosphonate anion methylating agentsJoseph J Topczewski, Daniel M Quinn
Chemico-Biological Interactions|May 25, 2010
A secondary isotope effect study of equine serum butyrylcholinesterase-catalyzed hydrolysis of acetylthiocholineKenneth L Wiley, Jose R Tormos, Daniel M Quinn
Archives of Biochemistry and Biophysics|August 20, 2017
Flavin-dependent thymidylate synthase: N5 of flavin as a Methylene carrierKalani Karunaratne, Nicholas Luedtke, Daniel M Quinn, et al.
Molecules (Basel, Switzerland)|September 5, 2017
Why is Aged Acetylcholinesterase So Difficult to Reactivate?Daniel M Quinn, Joseph Topczewski, Nilanthi Yasapala, et al.
Journal of Molecular Graphics & Modelling|October 12, 2015
Development of quantitative structure activity relationships for the binding affinity of methoxypyridinium cations for human acetylcholinesteraseJason A Morrill, Joseph J Topczewski, Alexander M Lodge, et al.
Journal of the American Chemical Society|October 20, 2005
The reactant state for substrate-activated turnover of acetylthiocholine by butyrylcholinesterase is a tetrahedral intermediateJose R Tormos, Kenneth L Wiley, Javier Seravalli, et al.
Journal of the American Chemical Society|November 26, 2010
Accumulation of tetrahedral intermediates in cholinesterase catalysis: a secondary isotope effect studyJose R Tormos, Kenneth L Wiley, Yi Wang, et al.
Bioorganic & Medicinal Chemistry Letters|October 1, 2013
Reversible inhibition of human acetylcholinesterase by methoxypyridinium speciesJoseph J Topczewski, Alexander M Lodge, Sumana N Yasapala, et al.
Journal of the American Chemical Society|October 31, 2017
Protein Mass Effects on Formate DehydrogenaseChethya Ranasinghe, Qi Guo, Paul J Sapienza, et al.
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