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由具有共同核心的氨基酸序列赋予的乙酰胆碱酯酶外周阴离子位点简并性。

Acetylcholinesterase peripheral anionic site degeneracy conferred by amino acid arrays sharing a common core.

作者信息

Barak D, Kronman C, Ordentlich A, Ariel N, Bromberg A, Marcus D, Lazar A, Velan B, Shafferman A

机构信息

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

出版信息

J Biol Chem. 1994 Mar 4;269(9):6296-305.

PMID:8119978
Abstract

Several of the residues constituting the peripheral anionic site (PAS) in human acetylcholinesterase (HuAChE) were identified by a combination of kinetic studies with 19 single and multiple HuAChE mutants, fluorescence binding studies with the Trp-286 mutant, and by molecular modeling. Mutants were analyzed with three structurally distinct positively charged PAS ligands, propidium, decamethonium, and di(p-allyl-N-dimethylaminophenyl)pentane-3-one (BW284C51), as well as with selective active center inhibitors, hexamethonium and edrophonium. Single mutations of residues Tyr-72, Tyr-124, Glu-285, Trp-286, and Tyr-341 resulted in up to 10-fold increase in inhibition constants for PAS ligands, whereas for multiple mutants up to 400-fold increase was observed. The 6th PAS element residue Asp-74 is unique in its ability to affect conformation of both the active site and the PAS (Shafferman, A., Velan, B., Ordentlich, A., Kronman, C., Grosfeld, H., Leitner, M., Flashner, Y., Cohen, S., Barak, D., and Ariel, N. (1992) EMBO J. 11, 3561-3568) as demonstrated by the several hundred-fold increase in Ki for D74N inhibition by the bisquaternary ligands decamethonium and BW284C51. Based on these studies, singular molecular models for the various HuAChE inhibitor complexes were defined. Yet, for the decamethonium complex two distinct conformations were generated, accommodating the quaternary ammonium group by interactions with either Trp-286 or with Tyr-341. We propose that the PAS consists of a number of binding sites, close to the entrance of the active site gorge, sharing residues Asp-74 and Trp-286 as a common core. Binding of ligands to these residues may be the key to the allosteric modulation of HuAChE catalytic activity. This functional degeneracy is a result of the ability of the Trp-286 indole moiety to interact either via stacking, aromatic-aromatic, or via pi-cation attractions and the involvement of the carboxylate of Asp-74 in charge-charge or H-bond interactions.

摘要

通过对19种单一和多重人乙酰胆碱酯酶(HuAChE)突变体进行动力学研究、对Trp-286突变体进行荧光结合研究以及分子建模相结合的方法,确定了构成人乙酰胆碱酯酶外周阴离子位点(PAS)的几个残基。用三种结构不同的带正电荷的PAS配体(碘化丙啶、十烃季铵和二(对烯丙基-N-二甲基氨基苯基)戊烷-3-酮(BW284C51))以及选择性活性中心抑制剂(六甲铵和依酚氯铵)对突变体进行分析。残基Tyr-72、Tyr-124、Glu-285、Trp-286和Tyr-341的单突变导致PAS配体的抑制常数增加高达10倍,而对于多重突变体,观察到高达400倍的增加。PAS的第6个元素残基Asp-74在影响活性位点和PAS构象方面具有独特能力(沙弗曼,A.,韦兰,B.,奥登特利希,A.,克朗曼,C.,格罗斯费尔德,H.,莱特纳,M.,弗拉什纳,Y.,科恩,S.,巴拉克,D.,和阿里尔,N.(1992年)《欧洲分子生物学组织杂志》11,3561 - 3568),这通过双季铵配体十烃季铵和BW284C51对D74N抑制的Ki增加数百倍得到证明。基于这些研究,定义了各种HuAChE抑制剂复合物的单一分子模型。然而,对于十烃季铵复合物,产生了两种不同的构象,通过与Trp-286或Tyr-3-41相互作用来容纳季铵基团。我们提出PAS由一些靠近活性位点峡谷入口的结合位点组成,共享残基Asp-74和Trp-286作为共同核心。配体与这些残基的结合可能是HuAChE催化活性变构调节的关键。这种功能简并是Trp-286吲哚部分通过堆积、芳香 - 芳香相互作用或通过π - 阳离子吸引进行相互作用以及Asp-74的羧酸盐参与电荷 - 电荷或氢键相互作用的能力的结果。

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