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首页> 外文期刊>Ecotoxicology and Environmental Safety >Elucidation of endocrine - disrupting polychlorinated biphenyls binding potency with steroidogenic genes: Integration of in silico methods and ensemble docking approaches
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Elucidation of endocrine - disrupting polychlorinated biphenyls binding potency with steroidogenic genes: Integration of in silico methods and ensemble docking approaches

机译:阐明内分泌干扰多氯联苯与类固醇生成基因的结合力:计算机方法和整体对接方法的整合

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摘要

A myriad of polychlorinated biphenyls (PCBs) may have potential to reproductive axis and endocrine disruptions. PCBs mostly breach the cholesterol biotransformation in mitochondria through interfering with steroidogenic genes and lead to adverse consequences in steroidogenesis; however, studies are scanty. In this examination, the combinations of quantitative structure activity relationship (QSAR) modeling and ensemble docking approaches was performed to envisage structural properties of PCBs that influence the developmental toxicity, estrogen receptor mediated impacts, and to provide a better comprehension of binding levels between PCBs, steroidogenic acute regulatory protein (StAR) and cholesterol side chain cleavage enzyme (CYP11A1). Prognostic QSAR models were illustrated with good robustness and predictive ability. Models provide extensive data on applicability domain and similarities between PCBs and training set compounds was used to implement for clustering and classification of toxic PCBs by employing Self Organizing Maps. Docking and interaction profiles interpretations provided various insights into the structural features of PCBs that influence the cholesterol binding to StAR and CYP11A1 domains. The non - polar, atomic pi - stacking and halogen bonds of PCBs with novel hotspots residues of StAR and CYP11A1 was indicated subtle conformational changes that barrier to cholesterol binding and/or locks to cholesterol ejection from Omega 1 - loop of StAR, and inhibits cholesterol to pregnenolone biosynthesis by CYP11A1; thus, these are probably revealed as block - cluster mechanisms. These outcomes are potential to be useful to predict developmental toxicity, endocrine disruption potencies and anti-steroidogenic activities of other environmental pollutants and provided sorted pinpoints for further evaluation of interaction mechanisms of PCBs with other sterodogenic genes.
机译:无数的多氯联苯(PCB)可能会破坏生殖轴和内分泌。多氯联苯主要通过干扰类固醇生成基因破坏线粒体中胆固醇的生物转化,并导致类固醇生成的不良后果。但是,研究很少。在这项检查中,结合了定量结构活性关系(QSAR)建模和整体对接方法,以设想影响多氯联苯的结构特性,这些物质会影响发育毒性,雌激素受体介导的影响,并能更好地理解多氯联苯之间的结合水平,类固醇生成的急性调节蛋白(StAR)和胆固醇侧链裂解酶(CYP11A1)。预测的QSAR模型具有良好的鲁棒性和预测能力。这些模型提供了有关适用性领域以及PCB之间的相似性的大量数据,并且通过使用自组织图,使用训练集化合物对有毒PCB进行聚类和分类。对接和相互作用概况的解释为影响胆固醇与StAR和CYP11A1域结合的PCB结构特征提供了各种见解。具有非典型的StAR和CYP11A1热点残基的PCB的非极性,原子π堆积和卤素键显示出微妙的构象变化,阻碍了胆固醇的结合和/或锁定了Omega 1-StAR环中胆固醇的排出,并抑制了胆固醇通过CYP11A1合成孕烯醇酮因此,这些可能被揭示为块集群机制。这些结果可能有助于预测其他环境污染物的发育毒性,内分泌干扰力和抗类固醇生成活性,并为进一步评估多氯联苯与其他成因基因的相互作用机制提供了精确的依据。

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