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利用具有两个手性中心的有机磷抑制剂的立体异构体探索人类乙酰胆碱酯酶的活性中心。

Exploring the active center of human acetylcholinesterase with stereomers of an organophosphorus inhibitor with two chiral centers.

作者信息

Ordentlich A, Barak D, Kronman C, Benschop H P, De Jong L P, Ariel N, Barak R, Segall Y, Velan B, Shafferman A

机构信息

Department of Biochemistry, Israel Institute for Biological Research, Ness-Ziona.

出版信息

Biochemistry. 1999 Mar 9;38(10):3055-66. doi: 10.1021/bi982261f.

Abstract

The stereoselectivity of the phosphonylation reaction and the effects of adduct configuration on the aging process were examined for human acetylcholinesterase (HuAChE) and its selected active center mutants, using the four stereomers of 1,2,2-trimethylpropyl methylphosphonofluoridate (soman). The reactivity of wild type HuAChE toward the PS-soman diastereomers was 4.0-7.5 x 10(4)-fold higher than that toward the PR-diastereomers. Aging of the PSCS-somanyl-HuAChE conjugate was also >1.6 x 10(4)-fold faster than that of the corresponding PRCS-somanyl adduct, as shown by both reactivation and electrospray mass spectrometry (ESI/MS) experiments. On the other hand, both processes exhibited very limited sensitivity to the chirality of the alkoxy group Calpha of either PS- or PR-diastereomers. These stereoselectivities presumably reflect the relative participation of the enzyme in stabilization of the Michaelis complexes and in dealkylation of the respective covalent conjugates, and therefore could be utilized for further probing of the HuAChE active center functional architecture. Reactivities of HuAChE enzymes carrying replacements at the acyl pocket (F295A, F297A, and F295L/F297V) indicate that stereoselectivity with respect to the soman phosphorus chirality depends on the structure of this binding subsite, but this stereoselectivity cannot be explained only by limitation in the capacity to accommodate the PR-diastereomers. In addition, these acyl pocket enzyme mutants display some (5-10-fold) preference for the PRCR-soman over the PRCS-stereomer, while reactivity of the hydrophobic pocket mutant enzyme W86F toward the PRCS-soman resembles that of the wild type HuAChE. Residue substitutions in the H-bond network (E202Q, E450A, Y133F, and Y133A) and the hydrophobic pocket (F338A, W86A, W86F, and Y337A) result in a limited stereoselectivity for the PSCS- over the PSCR-stereomer. Aging of the PS-somanyl conjugates with all the HuAChE mutant enzymes tested practically lacked stereoselectivity with respect to the Calpha of the alkoxy moiety. Thus, the inherent asymmetry of the active center does not seem to affect the rate-determining step of the dealkylation process, possibly because both the PSCS- and the PSCR-somanyl moieties yield the same carbocationic intermediate.

摘要

使用1,2,2 - 三甲基丙基甲基膦酰氟化物(梭曼)的四种立体异构体,研究了膦酰化反应的立体选择性以及加合物构型对人乙酰胆碱酯酶(HuAChE)及其选定的活性中心突变体老化过程的影响。野生型HuAChE对PS - 梭曼非对映异构体的反应性比对PR - 非对映异构体的反应性高4.0 - 7.5×10⁴倍。如重新活化和电喷雾质谱(ESI/MS)实验所示,PSCS - 梭曼基 - HuAChE共轭物的老化也比相应的PRCS - 梭曼基加合物快>1.6×10⁴倍。另一方面,这两个过程对PS - 或PR - 非对映异构体的烷氧基Cα的手性表现出非常有限的敏感性。这些立体选择性可能反映了酶在稳定米氏复合物和各自共价共轭物脱烷基化中的相对参与程度,因此可用于进一步探究HuAChE活性中心的功能结构。在酰基口袋(F295A、F297A和F295L/F297V)有取代的HuAChE酶的反应性表明,关于梭曼磷手性的立体选择性取决于该结合亚位点的结构,但这种立体选择性不能仅通过容纳PR - 非对映异构体的能力限制来解释。此外,这些酰基口袋酶突变体对PRCR - 梭曼比对PRCS - 立体异构体表现出一些(5 - 10倍)偏好,而疏水口袋突变酶W86F对PRCS - 梭曼的反应性类似于野生型HuAChE。氢键网络(E202Q、E450A、Y133F和Y133A)和疏水口袋(F338A、W86A、W86F和Y337A)中的残基取代导致对PSCS - 立体异构体比对PSCR - 立体异构体的立体选择性有限。用所有测试的HuAChE突变酶处理的PS - 梭曼基共轭物的老化在烷氧基部分的Cα方面实际上缺乏立体选择性。因此,活性中心固有的不对称性似乎不影响脱烷基化过程的速率决定步骤,可能是因为PSCS - 和PSCR - 梭曼基部分都产生相同的碳正离子中间体。

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