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Comparison of the Binding of Reversible Inhibitors to Human Butyrylcholinesterase and Acetylcholinesterase: A Crystallographic Kinetic and Calorimetric Study

机译:可逆抑制剂与人丁酰胆碱酯酶和乙酰胆碱酯酶结合的比较:晶体学动力学和量热研究

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摘要

Acetylcholinesterase (AChE) and butyrylcholinesterase (BChE) hydrolyze the neurotransmitter acetylcholine and, thereby, function as coregulators of cholinergic neurotransmission. Although closely related, these enzymes display very different substrate specificities that only partially overlap. This disparity is largely due to differences in the number of aromatic residues lining the active site gorge, which leads to large differences in the shape of the gorge and potentially to distinct interactions with an individual ligand. Considerable structural information is available for the binding of a wide diversity of ligands to AChE. In contrast, structural data on the binding of reversible ligands to BChE are lacking. In a recent effort, an inhibitor competition approach was used to probe the overlap of ligand binding sites in BChE. Here, we extend this study by solving the crystal structures of human BChE in complex with five reversible ligands, namely, decamethonium, thioflavin T, propidium, huprine, and ethopropazine. We compare these structures to equivalent AChE complexes when available in the protein data bank and supplement this comparison with kinetic data and observations from isothermal titration calorimetry. This new information now allows us to define the binding mode of various ligand families and will be of importance in designing specific reversible ligands of BChE that behave as inhibitors or reactivators.
机译:乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)水解神经递质乙酰胆碱,从而充当胆碱能神经传递的调节剂。尽管密切相关,但这些酶显示出非常不同的底物特异性,仅部分重叠。这种差异主要是由于活性位点衬里内的芳族残基数目不同而导致的,这导致了峡谷形状的巨大差异,并可能导致了与单个配体的独特相互作用。大量结构信息可用于多种配体与AChE的结合。相反,缺乏有关可逆配体与BChE结合的结构数据。在最近的努力中,抑制剂竞争法被用来探测BChE中配体结合位点的重叠。在这里,我们通过解决人类BChE的晶体结构与五个可逆配体(十甲基,硫代黄素T,丙啶,胡嘌呤和乙丙嗪)的复合结构扩展了这项研究。我们将这些结构与蛋白质数据库中可用的等效AChE配合物进行比较,并用动力学数据和等温滴定量热法的观察补充这种比较。现在,这些新信息使我们能够定义各种配体家族的结合模式,并且在设计充当抑制剂或活化剂的BChE的特定可逆配体中将具有重要意义。

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