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Experimental Neurology|June 1, 1984
Characterization of activities and forms of cholinesterases in human primary brain tumorsN Razon, H Soreq, E Roth, et al.Brain Research|July 1, 1987
Differential susceptibility to phosphatidylinositol-specific phospholipase C of acetylcholinesterase in excitable tissues of embryonic and adult Torpedo ocellataA H Futerman, D Raviv, D M Michaelson, et al.Monographs in Neural Sciences|January 1, 1980
Fluorescent organophosphates: novel probes for studying aging-induced conformational changes in inhibited acetylcholinesterase and for localization of cholinesterase in nervous tissueG Amitai, Y Ashani, A Shahar, et al.Current Topics in Medicinal Chemistry|February 20, 2007
Bivalent ligands derived from Huperzine A as acetylcholinesterase inhibitorsH Haviv, D M Wong, I Silman, et al.FEBS Letters|September 14, 1992
Site-directed mutagenesis of active-site-related residues in Torpedo acetylcholinesterase. Presence of a glutamic acid in the catalytic triadN Duval, S Bon, I Silman, et al.Biochemistry|December 8, 1992
Chemical modification of Torpedo acetylcholinesterase by disulfides: appearance of a "molten globule" stateE A Dolginova, E Roth, I Silman, et al.Protein Science : a Publication of the Protein Society|February 1, 1994
Structure and dynamics of the active site gorge of acetylcholinesterase: synergistic use of molecular dynamics simulation and X-ray crystallographyP H Axelsen, M Harel, I Silman, et al.Bioscience Reports|January 1, 1981
Molecular forms of the cholinesterases inside and outside muscle endplatesJ Jedrzejczyk, I Silman, J M Lyles, et al.FEBS Letters|November 26, 1990
The structure of protein phosphatase 2A is as highly conserved as that of protein phosphatase 1S Orgad, N D Brewis, L Alphey, et al.Molecular Pharmacology|February 1, 1994
Differential effects of "peripheral" site ligands on Torpedo and chicken acetylcholinesteraseJ Eichler, A Anselment, J L Sussman, et al.Pageof 17