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脯氨酸 285 对于 2-PAM 对有机磷抑制的人丁酰胆碱酯酶的重激活是必不可少的。

Proline 285 is integral for the reactivation of organophosphate-inhibited human butyrylcholinesterase by 2-PAM.

机构信息

Division of Bacterial and Rickettsial Diseases, Walter Reed Army Institute of Research, Silver Spring, MD 20910.

Eppley Institute, University of Nebraska Medical Center, Omaha, NE 68198.

出版信息

Chem Biol Interact. 2020 Jun 1;324:109092. doi: 10.1016/j.cbi.2020.109092. Epub 2020 Apr 10.

Abstract

Human butyrylcholinesterase (HuBChE) is a stoichiometric bioscavenger that protects from the toxicity of nerve agents. Non-human primates are suitable models for toxicity studies that cannot be performed in humans. We evaluated the biochemical properties of native macaque (MaBChE) tetramers, compared to recombinant MaBChE monomers, PEGylated recombinant MaBChE tetramers and monomers, and native HuBChE tetramers. K and k values for butyrylthiocholine were independent of subunit assembly status. The K for all forms of MaBChE was about 70 μM, compared to 13 μM for HuBChE. The k was about 100,000 min for MaBChE and 30,000 min for HuBChE. The reversible inhibitor ethopropazine had similar K values of 0.05 μM for all MaBChE forms and HuBChE. The bimolecular rate constant, ki, for inhibition by diisopropylfluorophosphate (DFP), an analog of sarin, was 2.2 to 2.5 × 10 M min for all MaBChE forms and for HuBChE. A major difference between MaBChE and HuBChE was the rate of reactivation by 2-PAM. The second order rate constant for reactivation of DFP-inhibited MaBChE by 2-PAM was 1.4 M min, but was 380 fold faster for DFP-inhibited HuBChE (k 531 M min). The acyl pocket of MaBChE has Leu285 in place of Pro285 in HuBChE. The reactivation rate of DFP-inhibited HuBChE mutant P285L by 2-PAM was reduced 5.8-fold (k 92 M min) indicating that P285 determines whether 2-PAM binds in an orientation that favors release of diisopropylphosphate. DFP-inhibited MaBChE treated with 0.2 M 2-PAM recovered 10% of its original activity, whereas DFP-inhibited HuBChE recovered 80% activity. It was concluded that the biochemical properties of MaBChE are similar to those of HuBChE except for the reactivation of DFP-inhibited BChE.

摘要

人丁酰胆碱酯酶(HuBChE)是一种化学计量的生物清除剂,可防止神经毒剂的毒性。非人类灵长类动物是毒性研究的合适模型,这些研究不能在人类中进行。我们评估了天然猕猴(MaBChE)四聚体的生化特性,将其与重组 MaBChE 单体、聚乙二醇化的重组 MaBChE 四聚体和单体以及天然 HuBChE 四聚体进行了比较。丁酰硫代胆碱的 K 和 k 值与亚基组装状态无关。所有 MaBChE 形式的 K 值约为 70 μM,而 HuBChE 的 K 值约为 13 μM。MaBChE 的 k 值约为 100,000 min,而 HuBChE 的 k 值约为 30,000 min。可逆抑制剂乙丙嗪对所有 MaBChE 形式和 HuBChE 的 K 值均相似,为 0.05 μM。二异丙基氟磷酸酯(DFP)抑制的抑制比常数 ki,沙林的类似物,对于所有 MaBChE 形式和 HuBChE 为 2.2 至 2.5×10 M min。MaBChE 和 HuBChE 之间的一个主要区别是被 2-PAM 再激活的速率。2-PAM 再激活 DFP 抑制的 MaBChE 的二级反应速率常数为 1.4 M min,但 DFP 抑制的 HuBChE 的再激活速率快 380 倍(k 531 M min)。MaBChE 的酰基口袋中存在亮氨酸 285,而 HuBChE 中存在脯氨酸 285。2-PAM 处理的 DFP 抑制 HuBChE 突变体 P285L 的再激活速率降低了 5.8 倍(k 92 M min),表明 P285 决定了 2-PAM 是否以有利于释放二异丙基膦酸的方式结合。用 0.2 M 2-PAM 处理的 DFP 抑制的 MaBChE 恢复了其原始活性的 10%,而 DFP 抑制的 HuBChE 恢复了 80%的活性。结论是,MaBChE 的生化特性与 HuBChE 相似,除了 DFP 抑制的 BChE 的再激活。

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