Molecular docking for screening chemicals of environmental health concern: insight from a case study on bisphenols.

IF 3.9 3区 环境科学与生态学 Q1 CHEMISTRY, ANALYTICAL
Samira Norouzi, Noah Nahmiach, German Perez, Ying Zhu, Gilles H Peslherbe, Derek C G Muir, Xianming Zhang
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Abstract

To explore the use of molecular docking as a high throughput in silico screening tool for identifying chemicals of environmental health concern, we conducted a case study to assess endocrine disruption effects due to targeting of nuclear receptors (NRs) by chemicals with backbone structures like bisphenols, but with varied functional groups. The molecular docking analysis elucidates how functional groups of the chemicals, such as NH2, Cl, and OCH3, influence their interaction with the human estrogen receptor alpha (hERα), a key player in endocrine regulation. Through comparative docking analysis, we examined how bisphenol analogs interact with three distinct conformations of hERα: the apo structure and two structures with bound agonist and antagonist ligands. Water molecules within the protein and surrounding the ligand binding domain (LBD) were found to have little impact on the affinity of compounds binding to the receptor across various conformations. This can be attributed to the hydrophobic nature of the ligand-binding pocket, which consists mainly of hydrophobic amino acid residues and binding sites. In the assessment of bisphenol analogs compared to well established endocrine disrupting chemicals (EDCs), it was observed that these analogs exhibit characteristics commonly associated with endocrine disruptors. While compounds like BPA and BPF exhibited partial agonist activity, stimulating hERα activity to varying degrees, other compounds displayed non-agonist behavior, suggesting a different mode of interaction with the receptor. Further analysis revealed the significance of specific functional groups, such as hydroxyl or amine groups, on the aromatic ring of these compounds in modulating their binding affinity to hERα. Within the ligand binding site of hERα, amino acid residues Glu353, Arg394, and His524 have the capacity to form hydrogen bonds with hydroxyl or amine groups. Protonation or deprotonation of these groups can further alter their binding affinity, thereby influencing their interaction with estrogen receptors and subsequent estrogenic effects. Via this case study, we demonstrate the potential and provide best practices of using molecular docking as a new approach methodology (NAM) for chemical assessments and regulations.

筛选环境健康关注的化学品的分子对接:来自双酚类案例研究的见解。
为了探索分子对接作为一种高通量的硅筛选工具用于识别环境健康关注的化学物质,我们进行了一个案例研究,以评估具有双酚类骨干结构但具有不同功能基的化学物质靶向核受体(nr)所产生的内分泌干扰效应。分子对接分析阐明了化学物质的功能基团,如NH2、Cl和OCH3,如何影响它们与人类雌激素受体α (hERα)的相互作用,hERα是内分泌调节的关键角色。通过比较对接分析,我们研究了双酚类似物如何与hERα的三种不同构象相互作用:载脂蛋白结构和结合激动剂和拮抗剂配体的两种结构。发现蛋白质内部和配体结合域(LBD)周围的水分子对不同构象的化合物与受体结合的亲和力几乎没有影响。这可以归因于配体结合袋的疏水性,它主要由疏水氨基酸残基和结合位点组成。在将双酚类似物与公认的内分泌干扰物(EDCs)进行比较的评估中,观察到这些类似物表现出通常与内分泌干扰物相关的特征。虽然BPA和BPF等化合物表现出部分激动剂活性,不同程度地刺激hERα活性,但其他化合物表现出非激动剂行为,表明与受体的相互作用模式不同。进一步分析揭示了这些化合物芳香环上的特定官能团(如羟基或胺基)在调节其与hERα的结合亲和力方面的重要性。在hERα的配体结合位点,氨基酸残基Glu353、Arg394和His524具有与羟基或胺基形成氢键的能力。这些基团的质子化或去质子化可以进一步改变它们的结合亲和力,从而影响它们与雌激素受体的相互作用和随后的雌激素效应。通过本案例研究,我们展示了分子对接作为化学评估和监管新方法(NAM)的潜力,并提供了最佳实践。
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来源期刊
Environmental Science: Processes & Impacts
Environmental Science: Processes & Impacts CHEMISTRY, ANALYTICAL-ENVIRONMENTAL SCIENCES
CiteScore
9.50
自引率
3.60%
发文量
202
审稿时长
1 months
期刊介绍: Environmental Science: Processes & Impacts publishes high quality papers in all areas of the environmental chemical sciences, including chemistry of the air, water, soil and sediment. We welcome studies on the environmental fate and effects of anthropogenic and naturally occurring contaminants, both chemical and microbiological, as well as related natural element cycling processes.
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