College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar, 161006, China.
College of Chemistry and Chemical Engineering, Qiqihar University, Qiqihar, 161006, China; Heilongjiang Provincial Key Laboratory of Surface Active Agent and Auxiliary, Qiqihar University, Qiqihar, 161006, China.
Environ Int. 2024 Aug;190:108926. doi: 10.1016/j.envint.2024.108926. Epub 2024 Jul 31.
Pregnane X receptor (PXR) is a heterologous biosensor that is involved in the metabolic pathway of environmental pollutants, regulating the transcription of genes involved in biotransformation. There are significant differences in the selectivity and specificity of organic pollutants (OPs) toward polar bear PXR (pbPXR) and human PXR (hPXR), but the detailed dynamical characteristics of their interactions are unclear. Homology Modeling, molecular docking, molecular dynamics simulation, and free energy calculation were used to analyze the recognition of pbPXR and hPXR by three OPs: BPA, chlordane and toxaphene. Comparing interaction patterns along with binding free energy of pbPXR and hPXR with these three OPs revealed that although pbPXR and hPXR interact similar with these three OPs, these OPs have different effects on the internal dynamics of pbPXR and hPXR. This results in significant alterations in the interaction of key residues near Leu209, Met243, Phe288, Met323, and His407 with OPs, thereby influencing their binding energy. Non-polar interactions, especially van der Waals interactions, were found to be the dominating factors in interacting of these OPs with PXRs. The region surrounding these key residues facilitates hydrophobic contacts with PXR, which are crucial for the selective activation of PXRs in different species by these three OPs. These findings are of significant guidance in understanding the impacts of environmental endocrine disruptors on different organisms.
孕烷 X 受体 (PXR) 是一种异源生物传感器,参与环境污染物的代谢途径,调节参与生物转化的基因的转录。极性熊 PXR(pbPXR) 和人 PXR(hPXR) 对有机污染物 (OPs) 的选择性和特异性有很大差异,但它们相互作用的详细动力学特征尚不清楚。同源建模、分子对接、分子动力学模拟和自由能计算用于分析 pbPXR 和 hPXR 对三种 OPs 的识别:BPA、氯丹和毒杀芬。比较 pbPXR 和 hPXR 与这三种 OPs 的相互作用模式以及结合自由能表明,尽管 pbPXR 和 hPXR 与这三种 OPs 相互作用相似,但这些 OPs 对 pbPXR 和 hPXR 的内部动力学有不同的影响。这导致与 Leu209、Met243、Phe288、Met323 和 His407 附近关键残基与 OPs 的相互作用发生显著变化,从而影响它们的结合能。非极性相互作用,特别是范德华相互作用,被发现是这些 OPs 与 PXRs 相互作用的主要因素。这些关键残基周围的区域有利于与 PXR 形成疏水接触,这对于这三种 OPs 在不同物种中选择性激活 PXR 至关重要。这些发现对于理解环境内分泌干扰物对不同生物体的影响具有重要的指导意义。