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肟结合的苯线磷-乙酰胆碱酯酶的晶体结构:重新活化涉及His447环翻转以形成反应性Glu334-His447-肟三联体。

Crystal structures of oxime-bound fenamiphos-acetylcholinesterases: reactivation involving flipping of the His447 ring to form a reactive Glu334-His447-oxime triad.

作者信息

Hörnberg Andreas, Artursson Elisabet, Wärme Rikard, Pang Yuan-Ping, Ekström Fredrik

机构信息

Swedish Defence Research Agency, Division of CBRN Defence and Security, S-901 82 Umeå, Sweden.

出版信息

Biochem Pharmacol. 2010 Feb 1;79(3):507-15. doi: 10.1016/j.bcp.2009.08.027. Epub 2009 Sep 2.

DOI:10.1016/j.bcp.2009.08.027
PMID:19732756
Abstract

Organophosphorus insecticides and nerve agents inhibit the vital enzyme acetylcholinesterase by covalently bonding to the catalytic serine residue of the enzyme. Oxime-based reactivators, such as [(E)-[1-[(4-carbamoylpyridin-1-ium-1-yl)methoxymethyl]pyridin-2-ylidene]methyl]-oxoazanium dichloride (HI-6) and 1,7-heptylene-bis-N,N'-2-pyridiniumaldoxime dichloride (Ortho-7), restore the organophosphate-inhibited enzymatic activity by cleaving the phosphorous conjugate. In this article, we report the intermolecular interactions between Mus musculus acetylcholinesterase inhibited by the insecticide fenamiphos (fep-mAChE) and HI-6 or Ortho-7 revealed by a combination of crystallography and kinetics. The crystal structures of the two oxime-bound fep-mAChE complexes show that both oximes interact with the peripheral anionic site involving different conformations of Trp286 and different peripheral-site residues (Tyr124 for HI-6 and Tyr72 for Ortho-7). Moreover, residues at catalytic site of the HI-6-bound fep-mAChE complex adopt conformations that are similar to those in the apo mAChE, whereas significant conformational changes are observed for the corresponding residues in the Ortho-7-bound fep-mAChE complex. Interestingly, flipping of the His447 imidazole ring allows the formation of a hydrogen bonding network among the Glu334-His447-Ortho-7 triad, which presumably deprotonates the Ortho-7 oxime hydroxyl group, increases the nucleophilicity of the oxime group, and leads to cleavage of the phosphorous conjugate. These results offer insights into a detailed reactivation mechanism for the oximes and development of improved reactivators.

摘要

有机磷杀虫剂和神经毒剂通过与酶的催化丝氨酸残基共价结合来抑制重要的乙酰胆碱酯酶。基于肟的重活化剂,如[(E)-[1-[(4-氨基甲酰吡啶-1-鎓-1-基)甲氧基甲基]吡啶-2-亚基]甲基]-氧代氮鎓二氯化物(HI-6)和1,7-庚烯-双-N,N'-2-吡啶醛肟二氯化物(Ortho-7),通过裂解磷共轭物来恢复有机磷酸酯抑制的酶活性。在本文中,我们报告了通过晶体学和动力学相结合揭示的受杀虫剂苯线磷抑制的小家鼠乙酰胆碱酯酶(fep-mAChE)与HI-6或Ortho-7之间的分子间相互作用。两种肟结合的fep-mAChE复合物的晶体结构表明,两种肟都与外周阴离子位点相互作用,涉及Trp286的不同构象和不同的外周位点残基(HI-6为Tyr124,Ortho-7为Tyr72)。此外,HI-6结合的fep-mAChE复合物催化位点的残基采用与脱辅基mAChE中相似的构象,而在Ortho-7结合的fep-mAChE复合物中相应残基观察到显著的构象变化。有趣的是,His447咪唑环的翻转允许在Glu334-His447-Ortho-7三联体之间形成氢键网络,这可能使Ortho-7肟羟基去质子化,增加肟基团的亲核性,并导致磷共轭物的裂解。这些结果为肟的详细重活化机制和改进重活化剂的开发提供了见解。

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