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Differences between the binding modes of enantiomers S/R-nicotine to acetylcholinesterase

机译:对映体S / R-NICOTINE与乙酰胆碱酯酶的结合模式之间的差异

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摘要

Nicotine causes neurotoxic effects because it quickly penetrates the blood-brain barrier after entering the human body. Acetylcholinesterase (AChE) is a key enzyme in the central and peripheral nervous system associated with neurotoxicity. In this study, a spectroscopic method and computer simulation were applied to explore the mode of interaction between AChE and enantiomers of nicotine (S/R-nicotine). Fluorescence spectroscopy showed that the quenching mechanism of endogenous fluorescence of AChE by S/R-nicotine was static, as confirmed by the time-resolved steady-state fluorescence. The binding strength of both nicotine to AChE was weak (S-AChE: K-a = 80.06 L mol(-1), R-AChE: K-a = 173.75 L mol(-1)). The main driving forces of S-AChE system interaction process were van der Waals force and hydrogen bonding, whereas that of R-AChE system was electrostatic force. Computer simulations showed that there were other important forces involved. S/R-Nicotine had a major binding site on AChE, and molecular docking showed that they bound mainly to the cavities enclosed by the active sites (ES, PAS, OH, AACS, and AP) in the protein. UV-vis spectroscopy and 3D spectroscopy indicated that nicotine significantly affected the microenvironment of Trp amino acids in AChE. The CD spectra indicated that S-nicotine increased the alpha-helical structure of AChE, but the overall conformation did not change significantly. By contrast, R-nicotine significantly changed the secondary structure of AChE. 5,5'-Dithiobis-2-nitrobenzoic acid (DTNB) method indicated that S and R nicotine produced different degrees of inhibition on the catalytic activity of AChE. Both experimental methods and computer simulations showed that R-nicotine had a significantly higher effect on AChE than S-nicotine. This research comprehensively and systematically analyzed the mode of interaction between nicotine and AChE for neurotoxicity assessment.
机译:尼古丁导致神经毒性效应,因为它在进入人体后迅速穿透血脑屏障。乙酰胆碱酯酶(ACHE)是与神经毒性相关的中央和外周神经系统中的关键酶。在该研究中,应用光谱法和计算机模拟来探讨尼古丁(S / R-尼古丁)的疼痛和对映体之间的相互作用模式。荧光光谱表明,通过S / R尼古丁的内源性荧光的猝灭机理是静态的,如通过时间分辨稳态荧光所证实的。尼古丁对疼痛的结合强度较弱(S-ACHE:K-A = 80.06Lmol(-1),R-ACHE:K-A = 173.75Lmol(-1))。 S-ACHE系统相互作用过程的主要驱动力是van der WALS力和氢键,而R-ACHE系统的静电力是静电力。计算机模拟表明还有其他重要的力量。 S / R-NICOTINE在ACHE上具有一个主要的结合位点,分子对接表明它们主要绑定到蛋白质中的活性位点(ES,PAS,OH,AAC和AP)包围的空腔。 UV-Vis光谱和3D光谱表明尼古丁显着影响了TRP氨基酸在疼痛中的微环境。 CD光谱表明S-尼古丁增加了疼痛的α-螺旋结构,但整体构象并没有显着变化。相比之下,R-NICOTINE显着改变了疼痛的二级结构。 5,5'-二噻吩-2-硝基苯甲酸(DTNB)方法表明,S和R尼古丁在ache的催化活性上产生了不同程度的抑制。两种实验方法和计算机模拟表明,R-NICOTINE对比S-NICOTINE的疼痛有显着更高的影响。本研究全面地和系统地分析了尼古丁与神经毒性评估的疼痛之间的相互作用方式。

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  • 来源
    《RSC Advances》 |2019年第3期|共13页
  • 作者单位

    Sichuan Univ Sch Chem Engn Chengdu 610065 Sichuan Peoples R China;

    R&

    D Ctr China Tobacco Yunnan Ind Co Ltd Kunming 650231 Yunnan Peoples R China;

    R&

    D Ctr China Tobacco Yunnan Ind Co Ltd Kunming 650231 Yunnan Peoples R China;

    R&

    D Ctr China Tobacco Yunnan Ind Co Ltd Kunming 650231 Yunnan Peoples R China;

    R&

    D Ctr China Tobacco Yunnan Ind Co Ltd Kunming 650231 Yunnan Peoples R China;

    R&

    D Ctr China Tobacco Yunnan Ind Co Ltd Kunming 650231 Yunnan Peoples R China;

    Sichuan Univ Sch Chem Engn Chengdu 610065 Sichuan Peoples R China;

    Sichuan Univ Sch Chem Engn Chengdu 610065 Sichuan Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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