Brestkin A P, Golovanov A V, Lavrent'ev A I, Maslennikov I G, Ianson N A
Ukr Biokhim Zh (1978). 1988 Nov-Dec;60(6):38-42.
It has been demonstrated that esters (RO)2P(O)X and RO(R1)P(O)X where R and R1-alkyls, X-CF3 or C2F5, irreversibly inhibited cholinesterases. Their inhibitory effect increased with the elongation of alkyl radicals from CH3- to C4H9-, being more evident with respect to butyrylcholinesterase from horse serum than to acetylcholinesterase from human erythrocytes. It is shown that the concept on inability of esters of thiophosphoric acids to inhibit cholinesterases due to the fact that thionic sulphur (P-S) does not form a strong hydrogen bonds, cannot be applied to esters of perfluorothiophosphonic acids: (C2H5O)2P(S)CF3 inhibits cholinesterases more efficiently than (C2H5O)2P(O)CF3. One of the fluoric atoms probably forms hydrogen bond with the corresponding site of the active centre in cholinesterases, similar to phosphorylic oxygen (P-O) in case of the enzyme inhibition by esters of phosphoric acids.
已经证明,酯(RO)2P(O)X和RO(R1)P(O)X(其中R和R1为烷基,X为CF3或C2F5)可不可逆地抑制胆碱酯酶。它们的抑制作用随着烷基从CH3 - 延长至C4H9 - 而增强,相对于马血清中的丁酰胆碱酯酶比人红细胞中的乙酰胆碱酯酶更明显。结果表明,由于硫代磷酸酯中的硫代硫(P - S)不能形成强氢键而不能抑制胆碱酯酶的概念,不适用于全氟硫代膦酸酯:(C2H5O)2P(S)CF3比(C2H5O)2P(O)CF3更有效地抑制胆碱酯酶。其中一个氟原子可能与胆碱酯酶活性中心的相应位点形成氢键,类似于磷酸酯抑制酶时的磷酰氧(P - O)。