The architecture of human acetylcholinesterase active center probed by interactions with selected organophosphate inhibitors

被引:94
作者
Ordentlich, A
Barak, D
Kronman, C
Ariel, N
Segall, Y
Velan, B
Shafferman, A
机构
[1] ISRAEL INST BIOL RES,DEPT BIOCHEM,IL-70450 NESS ZIONA,ISRAEL
[2] ISRAEL INST BIOL RES,DEPT ORGAN CHEM,IL-70450 NESS ZIONA,ISRAEL
关键词
D O I
10.1074/jbc.271.20.11953
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The role of the functional architecture of human acetylcholinesterase (HuAChE) active center in facilitating reactions with organophosphorus inhibitors was examined by a combination of site-directed mutagenesis and kinetic studies of phosphorylation with organophosphates differing in size of their alkoxy substituents and in the nature of the leaving group. Replacements of residues Phe-295 and Phe-297, constituting the HuAChE acyl pocket, increase up to 80-fold the reactivity of the enzymes toward diisopropyl phosphorofluoridate, diethyl phosphorofluoridate, and p-nitrophenyl diethyl phosphate (paraoxon), indicating the role of this subsite in accommodating the phosphate alkoxy substituent. On the other hand, a decrease of up to 160-fold in reactivity was observed for enzymes carrying replacements of residues Tyr-133, Glu-202, and Glu-450, which are constituents of the hydrogen bond network in the HuAChE active center, which maintains its unique functional architecture. Replacement of residues Trp-86, Tyr-337, and Phe-338 in the alkoxy pocket affected reactivity toward diisopropyl phosphorofluoridate and paraoxon, but to a lesser extent that toward diethyl phosphorofluoridate, indicating that both the alkoxy substituent and the p-nitrophenoxy leaving group interact with this subsite. In all cases the effects on reactivity toward organophosphates, demonstrated in up to 10,000-fold differences in the values of bimolecular rate constants, were mainly a result of altered affinity of the HuAChE mutants, while the apparent first order rate constants of phosphorylation varied within a narrow range. This finding indicates that the main role of the functional architecture of HuAChE active center in phosphorylation is to facilitate the formation of enzyme-inhibitor Michaelis complexes and that this affinity, rather than the nucleophilic activity of the enzyme catalytic machinery, is a major determinant of HuAChE reactivity toward organophosphates.
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页码:11953 / 11962
页数:10
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共 48 条
  • [1] INHIBITION OF ACETYLCHOLINESTERASE FROM DIFFERENT SPECIES BY ORGANOPHOSPHORUS COMPOUNDS, CARBAMATES AND METHYLSULFONYLFLUORIDE
    ANDERSEN, RA
    AARAAS, I
    GAARE, G
    FONNUM, F
    [J]. GENERAL PHARMACOLOGY, 1977, 8 (5-6): : 331 - 334
  • [2] [Anonymous], 1972, Enzyme inhibitors as substrates-Interactions of esterases with esters of organophosphorus and carbamic acids
  • [3] BARAK D, 1992, MULTIDISCIPLINARY APPROACHES TO CHOLINESTERASE FUNCTIONS, P195
  • [4] BARAK D, 1994, J BIOL CHEM, V269, P6296
  • [5] NERVE AGENT STEREOISOMERS - ANALYSIS, ISOLATION, AND TOXICOLOGY
    BENSCHOP, HP
    DEJONG, LPA
    [J]. ACCOUNTS OF CHEMICAL RESEARCH, 1988, 21 (10) : 368 - 374
  • [6] BERMAN HA, 1989, J BIOL CHEM, V264, P3942
  • [7] A NEW AND RAPID COLORIMETRIC DETERMINATION OF ACETYLCHOLINESTERASE ACTIVITY
    ELLMAN, GL
    COURTNEY, KD
    ANDRES, V
    FEATHERSTONE, RM
    [J]. BIOCHEMICAL PHARMACOLOGY, 1961, 7 (02) : 88 - &
  • [8] KINETICS FOR THE INHIBITION OF ACETYLCHOLINESTERASE FROM THE ELECTRIC-EEL BY SOME ORGANOPHOSPHATES AND CARBAMATES
    FORSBERG, A
    PUU, G
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1984, 140 (01): : 153 - 156
  • [9] FOURNIER D, 1992, J BIOL CHEM, V267, P14270
  • [10] INTERACTION OF AN ORGANOPHOSPHATE WITH A PERIPHERAL SITE ON ACETYLCHOLINESTERASE
    FRIBOULET, A
    RIEGER, F
    GOUDOU, D
    AMITAI, G
    TAYLOR, P
    [J]. BIOCHEMISTRY, 1990, 29 (04) : 914 - 920