双咪唑肟诱导加利福尼亚鱼雷乙酰胆碱酯酶外周阴离子位点的构象变化。

Patricia M Legler, Iswarduth Soojhawon, Charles B Millard
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引用次数: 6

摘要

作为设计改进的神经毒剂解毒剂的持续努力的一部分,确定了加利福尼亚鱼雷乙酰胆碱酯酶(TcAChE)与双吡啶肟(ortho7)或其实验性双咪唑类似物(2bm -7)结合的两种x射线晶体结构。双肟含有两个由疏水连接剂连接的肟基。Ortho-7的一个肟基结合在Trp279附近的活性位点峡谷入口,第二个肟基结合在Trp84和Phe330附近的底部。在邻位7- tcache络合物中,峡谷底部的肟指向亲核的Ser200。相反,2bm -7的肟基从Ser200旋转,入口处的肟引起外周阴离子位点(PAS)残基Trp279的显着构象变化。构象变化改变了PAS的表面,使2bm -7的咪唑肟离Ser200更远。与ortho7相比,2bm -7对vx抑制、tabnon -抑制或沙林抑制的人乙酰胆碱酯酶的结合和再激活能力相对较弱,部分原因可能是由于晶体捕获的非生产结合态。总体而言,2BIM-7的再活化效率与2-吡啶醛肟甲基氯(2-PAM)相当,但与2-PAM不同的是,双咪唑肟缺乏固定电荷,这可能会影响其膜通透性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A conformational change in the peripheral anionic site of Torpedo californica acetylcholinesterase induced by a bis-imidazolium oxime.

As part of ongoing efforts to design improved nerve agent antidotes, two X-ray crystal structures of Torpedo californica acetylcholinesterase (TcAChE) bound to the bis-pyridinium oxime, Ortho-7, or its experimental bis-imidazolium analogue, 2BIM-7, were determined. Bis-oximes contain two oxime groups connected by a hydrophobic linker. One oxime group of Ortho-7 binds at the entrance to the active-site gorge near Trp279, and the second binds at the bottom near Trp84 and Phe330. In the Ortho-7-TcAChE complex the oxime at the bottom of the gorge was directed towards the nucleophilic Ser200. In contrast, the oxime group of 2BIM-7 was rotated away from Ser200 and the oxime at the entrance induced a significant conformational change in the peripheral anionic site (PAS) residue Trp279. The conformational change alters the surface of the PAS and positions the imidazolium oxime of 2BIM-7 further from Ser200. The relatively weaker binding and poorer reactivation of VX-inhibited, tabun-inhibited or sarin-inhibited human acetylcholinesterase by 2BIM-7 compared with Ortho-7 may in part be owing to the unproductively bound states caught in crystallo. Overall, the reactivation efficiency of 2BIM-7 was comparable to that of 2-pyridine aldoxime methyl chloride (2-PAM), but unlike 2-PAM the bis-imidazolium oxime lacks a fixed charge, which may affect its membrane permeability.

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