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乙酰胆碱氟化的构象生物效应的理论研究。

Theoretical Study on the Conformational Bioeffect of the Fluorination of Acetylcholine.

机构信息

Department of Chemistry, Federal University of Lavras, P.O. Box 3037, 37200-000, Lavras, MG, Brazil.

出版信息

Mol Inform. 2017 Dec;36(12). doi: 10.1002/minf.201700084. Epub 2017 Aug 28.

Abstract

There has been an increasing interest in the study of fluorinated derivatives of gamma-aminobutyric acid (GABA), an acetylcholine (AC) analog. This work reports a theoretical study on the effect of an α-carbonyl fluorination in AC, aiming at understanding the role of a distant fluorine relative to the positively charged nitrogen on the conformational folding of the resulting fluorinated AC. In addition, the chemical and structural changes were evaluated on the basis of ligand-enzyme (acetylcholinesterase) interactions. In an enzyme-free environment, the fluorination yields conformational changes relative to AC due to the appearance of some attractive interactions with fluorine and a weaker steric repulsion between the fluorine substituent and the carboxyl group, rather than to a possible electrostatic interaction F⋅⋅⋅N . Moreover, the gauche orientation in the N-C-C-O fragment of AC owing to the electrostatic gauche effect is reinforced after fluorination. For instance, the conformational equilibrium in AC is described by a competition between gauche and anti conformers (accounting for the N-C-C-O dihedral angle) in DMSO, while the population for a gauche conformer in the fluorinated AC is almost 100 % in both gas phase and DMSO. However, this arrangement is disrupted in the biological environment even in the fluorinated derivative (whose bioconformation-like geometry shows a ligand-protein interaction of -84.1 kcal mol against -79.5 kcal mol for the most stable enzyme-free conformation), which shows an anti N-C-C-O orientation, because the enzyme induced-fit takes place. Nevertheless, the most likely bioconformation for the fluorinated AC does not match the bioactive AC backbone nor the most stable enzyme-free conformation, thus revealing the role of fluorination on the bioconformational control of AC.

摘要

人们对γ-氨基丁酸(GABA)的氟化衍生物的研究越来越感兴趣,GABA 是乙酰胆碱(AC)的类似物。本工作报道了 AC 中α-羰基氟化作用的理论研究,旨在了解相对于带正电荷的氮,远离氟对生成的氟化 AC 构象折叠的作用。此外,还基于配体-酶(乙酰胆碱酯酶)相互作用评估了化学和结构变化。在无酶环境中,由于与氟的一些吸引力相互作用以及氟取代基与羧基之间较弱的空间排斥,与 AC 相比,氟化会产生构象变化,而不是可能的静电相互作用 F⋅⋅⋅N。此外,由于静电 gauche 效应,AC 中 N-C-C-O 片段中的 gauche 取向在氟化后得到加强。例如,AC 中的构象平衡是由 gauche 和反式构象(占 N-C-C-O 二面角)之间的竞争来描述的(在 DMSO 中),而在氟代 AC 中 gauche 构象的比例在气相和 DMSO 中几乎都是 100%。然而,即使在生物环境中,这种排列也会被破坏,即使在氟化衍生物中也是如此(其生物构象样几何形状显示配体-蛋白相互作用为-84.1 kcal mol,而最稳定的无酶构象为-79.5 kcal mol),因为酶诱导契合发生。然而,氟化 AC 的最可能的生物构象既不符合生物活性 AC 骨架,也不符合最稳定的无酶构象,从而揭示了氟化对 AC 的生物构象控制的作用。

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