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乙酰胆碱酯酶外周位点及活性中心峡谷构象灵活性的结构见解。

Structural insights into conformational flexibility at the peripheral site and within the active center gorge of AChE.

作者信息

Bourne Yves, Radić Zoran, Kolb Hartmuth C, Sharpless K Barry, Taylor Palmer, Marchot Pascale

机构信息

Architecture et Fonction des Macromolécules Biologiques, CNRS, Marseille, France.

出版信息

Chem Biol Interact. 2005 Dec 15;157-158:159-65. doi: 10.1016/j.cbi.2005.10.018. Epub 2005 Nov 2.

Abstract

The peripheral anionic site on acetylcholinesterase (AChE), located at the active site gorge entry, encompasses overlapping binding sites for allosteric activators and inhibitors. Yet the molecular mechanisms coupling this site to the active center at the base of the gorge to modulate catalysis remain unclear. Crystal structures of mAChE bound with decidium, propidium and gallamine unveiled new determinants contributing to ligand interactions at the peripheral site. Subsequent studies using the syn and anti regioisomers of the click-chemistry inhibitor, TZ2PA6, that link propidium and tacrine moieties via distinctively substituted triazoles, revealed the inherent flexibility and a unique conformation of the peripheral site, along with substantial binding contributions from the triazoles with the Tyr337 region within the gorge. The recently solved structures of the mAChE mutant, Tyr337Ala, complexed with the TZ2PA6 isomers now reveals distinctive and time-dependent conformations of the complexes that are consistent with the triazole contribution to the energetics of inhibitor binding manifested in the respective dissociation rates of the complexes.

摘要

乙酰胆碱酯酶(AChE)上位于活性位点峡谷入口处的外周阴离子位点,包含变构激活剂和抑制剂的重叠结合位点。然而,将该位点与峡谷底部的活性中心耦合以调节催化作用的分子机制仍不清楚。与癸啶、丙啶和加拉明结合的mAChE晶体结构揭示了有助于在外周位点进行配体相互作用的新决定因素。随后使用点击化学抑制剂TZ2PA6的顺式和反式区域异构体进行的研究,该抑制剂通过独特取代的三唑连接丙啶和他克林部分,揭示了外周位点固有的灵活性和独特构象,以及三唑与峡谷内Tyr337区域的大量结合贡献。最近解析的mAChE突变体Tyr337Ala与TZ2PA6异构体复合的结构,现在揭示了复合物独特的、时间依赖性的构象,这与三唑对抑制剂结合能量学的贡献一致,体现在复合物各自的解离速率中。

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