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使用质谱法鉴定异马拉硫磷抑制后丁酰胆碱酯酶加合物:(1R)-和(1S)-立体异构体之间的作用机制差异

Identification of butyrylcholinesterase adducts after inhibition with isomalathion using mass spectrometry: difference in mechanism between (1R)- and (1S)-stereoisomers.

作者信息

Doorn J A, Schall M, Gage D A, Talley T T, Thompson C M, Richardson R J

机构信息

Toxicology Program, The University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Toxicol Appl Pharmacol. 2001 Oct 15;176(2):73-80. doi: 10.1006/taap.2001.9279.

Abstract

Previous kinetic studies found that butyrylcholinesterase (BChE) inhibited by (1R)-isomalathions readily reactivated, while enzyme inactivated by (1S)-isomers did not. This study tested the hypothesis that (1R)- and (1S)-isomers inhibit BChE by different mechanisms, yielding distinct adducts identifiable by peptide mass mapping with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS). Equine BChE (EBChE) was inhibited to <10% of control activity with each isomer of isomalathion and the reference compound isoparathion methyl. Control and treated enzyme was digested with trypsin, and peptides were fractionated with HPLC. Separated and unseparated peptides were analyzed with MALDI-TOF-MS. Identity of an organophosphorus peptide adduct was confirmed by fragmentation using postsource decay analysis. EBChE inhibited by (1R)-isomalathions or (S)-isoparathion methyl readily reactivated after oxime treatment with 30-40% activity recovered. Enzyme inactivated by (1S)-isomalathions or (R)-isoparathion methyl recovered <2% and <5% activity, respectively, after oxime treatment. MALDI-TOF-MS analysis revealed that inhibition of EBChE by (1R)-isomalathions and (R)- or (S)-isoparathion methyl yielded O,S-dimethyl phosphate adducts. Enzyme inactivated by (1S)-isomalathions produced only O-methyl phosphate adduct. EBChE modified by (1R)-isomalathions or either enantiomer of isoparathion methyl yielded an O-methyl phosphate adduct as well. The results indicate that EBChE inhibition by (1R)-isomalathions proceeds with loss of diethyl thiosuccinate, but inactivation by (1S)-isomers occurs with loss of thiomethyl as the primary leaving group followed by rapid expulsion of diethyl thiosuccinate to yield an aged enzyme. Furthermore, the data suggest that aging of the O,S-dimethyl phosphate adduct occurs via an S(N)2 process with loss of thiomethyl.

摘要

以往的动力学研究发现,被(1R)-异马拉硫磷抑制的丁酰胆碱酯酶(BChE)很容易重新激活,而被(1S)-异构体灭活的酶则不能。本研究检验了以下假设:(1R)-和(1S)-异构体通过不同机制抑制BChE,产生可通过基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)的肽质量图谱鉴定的不同加合物。用异马拉硫磷的每种异构体和参比化合物甲基异柳磷将马BChE(EBChE)抑制至对照活性的<10%。用胰蛋白酶消化对照酶和处理后的酶,并用HPLC分离肽段。用MALDI-TOF-MS分析分离和未分离的肽段。通过源后衰变分析进行裂解,确认有机磷肽加合物的身份。用肟处理后,被(1R)-异马拉硫磷或(S)-甲基异柳磷抑制的EBChE很容易重新激活,恢复30-40%的活性。用肟处理后,被(1S)-异马拉硫磷或(R)-甲基异柳磷灭活的酶分别恢复<2%和<5%的活性。MALDI-TOF-MS分析表明,(1R)-异马拉硫磷和(R)-或(S)-甲基异柳磷对EBChE的抑制产生了O,S-二甲基磷酸加合物。被(1S)-异马拉硫磷灭活的酶仅产生O-甲基磷酸加合物。被(1R)-异马拉硫磷或甲基异柳磷的任何一种对映体修饰的EBChE也产生了O-甲基磷酸加合物。结果表明,(1R)-异马拉硫磷对EBChE的抑制伴随着硫代琥珀酸二乙酯的损失,但(1S)-异构体的失活发生时,硫甲基作为主要离去基团损失,随后硫代琥珀酸二乙酯迅速排出,产生老化酶。此外,数据表明O,S-二甲基磷酸加合物的老化通过S(N)2过程发生,伴随着硫甲基的损失。

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