A series of O,O-diethyl-1-(N-alpha-hydrohexafluoroisobutyryl)aminoalkylphos phonates (APh) has been synthesized and their interaction with human erythrocyte acetylcholinesterase (AChE) and with horse serum butyrylcholinesterase (BuChE) studied. Most of the APhs inactivated the cholinesterases irreversible through formation of the enzyme-inhibitor intermediate. The inactivation rate constants and the enzyme-inhibitor intermediate dissociation constants are calculated. The quantitative structure-activity relationships including both hydrophobic and calculated steric parameters of substituents are developed for APh--ChE interactions. Molecular mechanics (programme MM2) was used for determining steric parameters (Es). On the basis of QSAR models analysis it was concluded that hydrophobic interactions play an essential role in APh--AChE binding, whereas for APh--BuChE binding steric interactions are essential. Presence of at least two APh binding centres on the surface of AChE and BuChE is suggested.
        
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Kuusk VV, Morozova IV, Agabekian RS, Aksinenko A, Epishina TA, Sokolov VB, Kovaleva NV, Razdol'skiy AN, Fetisov VN, Martynov IV (1990) [Inhibition of cholinesterase activity with fluorine-containing derivatives of alpha-aminophosphonic acid] Bioorganicheskaia Khimiia16: 1500-8
Kuusk VV, Morozova IV, Agabekian RS, Aksinenko A, Epishina TA, Sokolov VB, Kovaleva NV, Razdol'skiy AN, Fetisov VN, Martynov IV (1990) Bioorganicheskaia Khimiia16: 1500-8