剖析异硫磷的对映选择性神经毒性:来自细胞、分子和计算研究的手性见解

IF 3.8 3区 医学 Q2 CHEMISTRY, MEDICINAL
Jia-Qi Wang, Zhi-Cong He, Wei Peng*, Tian-Hao Han, Qiong Mei, Qi-Zhao Wang and Fei Ding*, 
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引用次数: 0

摘要

手性有机磷污染物在环境中大量存在,但这些不对称化学品对人类健康的神经毒性风险尚未得到充分评估。本文采用细胞、分子和计算毒理学方法,探讨了手性异碳磷对乙酰胆碱酯酶(AChE)介导的SH-SY5Y神经细胞的静态和动态毒性作用及其立体选择性差异,并进一步剖析其对端选择性神经毒性的微观基础。基于细胞的实验表明,手性异碳磷对SH-SY5Y细胞的存活率和胞内AChE活性具有较强的对映选择性,且(S)-异碳磷的细胞毒性明显大于(R)-异碳磷。异碳磷对映体对细胞内AChE活性的抑制作用呈剂量依赖性,(R)-/(S)-异碳磷的半最大抑制浓度(IC50)分别为6.179/1.753 μM。分子实验解释了细胞分析的结果,即异碳磷对映体对SH-SY5Y细胞的立体选择性毒性作用源于异碳磷对映体与神经元AChE之间的生物亲和性差异。同时,神经毒性作用模式显示,形成强非共价相互作用的关键氨基酸残基明显不同,这与手性异碳磷的分子结构刚性和神经元AChE底物结合域的构象动力学和柔韧性密切相关。尽管如此,我们观察到,在异碳磷对映体与芳香的Trp-86和tyrr -337残基之间形成的稳定的“夹心型π - π堆叠”是至关重要的,这显著降低了AChE - (S)-异碳磷复合物中的范德华贡献(ΔGvdW),并诱导了对映选择性神经毒性偶联过程中的自由能差异,从而阐明了突触AChE介导的(S)-异碳磷对SH-SY5Y神经元细胞具有很强的毒性作用。显然,这一努力可以为从宏观到微观水平评估人类暴露于手性有机磷的神经毒性风险提供实验见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dissecting the Enantioselective Neurotoxicity of Isocarbophos: Chiral Insight from Cellular, Molecular, and Computational Investigations

Dissecting the Enantioselective Neurotoxicity of Isocarbophos: Chiral Insight from Cellular, Molecular, and Computational Investigations

Chiral organophosphorus pollutants are found abundantly in the environment, but the neurotoxicity risks of these asymmetric chemicals to human health have not been fully assessed. Using cellular, molecular, and computational toxicology methods, this story is to explore the static and dynamic toxic actions and its stereoselective differences of chiral isocarbophos toward SH-SY5Y nerve cells mediated by acetylcholinesterase (AChE) and further dissect the microscopic basis of enantioselective neurotoxicity. Cell-based assays indicate that chiral isocarbophos exhibits strong enantioselectivity in the inhibition of the survival rates of SH-SY5Y cells and the intracellular AChE activity, and the cytotoxicity of (S)-isocarbophos is significantly greater than that of (R)-isocarbophos. The inhibitory effects of isocarbophos enantiomers on the intracellular AChE activity are dose-dependent, and the half-maximal inhibitory concentrations (IC50) of (R)-/(S)-isocarbophos are 6.179/1.753 μM, respectively. Molecular experiments explain the results of cellular assays, namely, the stereoselective toxic actions of isocarbophos enantiomers on SH-SY5Y cells are stemmed from the differences in bioaffinities between isocarbophos enantiomers and neuronal AChE. In the meantime, the modes of neurotoxic actions display that the key amino acid residues formed strong noncovalent interactions are obviously different, which are related closely to the molecular structural rigidity of chiral isocarbophos and the conformational dynamics and flexibility of the substrate binding domain in neuronal AChE. Still, we observed that the stable “sandwich-type π–π stacking” fashioned between isocarbophos enantiomers and aromatic Trp-86 and Tyr-337 residues is crucial, which notably reduces the van der Waals’ contribution (ΔGvdW) in the AChE–(S)-isocarbophos complexes and induces the disparities in free energies during the enantioselective neurotoxic conjugations and thus elucidating that (S)-isocarbophos mediated by synaptic AChE has a strong toxic effect on SH-SY5Y neuronal cells. Clearly, this effort can provide experimental insights for evaluating the neurotoxicity risks of human exposure to chiral organophosphates from macroscopic to microscopic levels.

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来源期刊
CiteScore
7.90
自引率
7.30%
发文量
215
审稿时长
3.5 months
期刊介绍: Chemical Research in Toxicology publishes Articles, Rapid Reports, Chemical Profiles, Reviews, Perspectives, Letters to the Editor, and ToxWatch on a wide range of topics in Toxicology that inform a chemical and molecular understanding and capacity to predict biological outcomes on the basis of structures and processes. The overarching goal of activities reported in the Journal are to provide knowledge and innovative approaches needed to promote intelligent solutions for human safety and ecosystem preservation. The journal emphasizes insight concerning mechanisms of toxicity over phenomenological observations. It upholds rigorous chemical, physical and mathematical standards for characterization and application of modern techniques.
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