首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Identification of the fungicide epoxiconazole by virtual screening and biological assessment as inhibitor of human 11 beta-hydroxylase and aldosterone synthase
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Identification of the fungicide epoxiconazole by virtual screening and biological assessment as inhibitor of human 11 beta-hydroxylase and aldosterone synthase

机译:用虚拟筛选和生物评估作为人11β-羟化酶和醛酮合成酶的抑制剂鉴定杀菌剂环氧喹唑酶

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摘要

Humans are constantly exposed to a multitude of environmental chemicals that may disturb endocrine functions. It is crucial to identify such chemicals and uncover their mode-of-action to avoid adverse health effects. 11 beta-hydroxylase (CYP11B1) and aldosterone synthase (CYP11B2) catalyze the formation of cortisol and aldosterone, respectively, in the adrenal cortex. Disruption of their synthesis by exogenous chemicals can contribute to cardio-metabolic diseases, chronic kidney disease, osteoporosis, and immune-related disorders. This study applied in silico screening and in vitro evaluation for the discovery of xenobiotics inhibiting CYP11B1 and CYP11B2. Several databases comprising environmentally relevant pollutants, chemicals in body care products, food additives and drugs were virtually screened using CYP11B1 and CYP11B2 pharmacophore models. A first round of biological testing used hamster cells overexpressing human CYP11B1 or CYP11B2 to analyze 25 selected virtual hits. Three compounds inhibited CYP11B1 and CYP11B2 with IC50 values below 3 mu M. The most potent inhibitor was epoxiconazole (IC50 value of 623 nM for CYP11B1 and 113 nM for CYP11B2, respectively); flurprimidol and ancymidol were moderate inhibitors. In a second round, these three compounds were tested in human adrenal H295R cells endogenously expressing CYP11B1 and CYP11B2, confirming the potent inhibition by epoxiconazole and the more moderate effects by flurprimidol and ancymidol. Thus, the in silico screening, prioritization of chemicals for initial biological tests and use of H295R cells to provide initial mechanistic information is a promising strategy to identify potential endocrine disruptors inhibiting corticosteroid synthesis. A critical assessment of human exposure levels and in vivo evaluation of potential corticosteroid disrupting effects by epoxiconazole is required.
机译:人类经常暴露于可能扰乱内分泌功能的众多环保化学品。确定这些化学品并揭示其作用模式以避免不良健康影响至关重要。 11β-羟化酶(CYP11B1)和醛固酮合成酶(CYP11B2)催化在肾上腺皮质中分别形成皮质醇和醛固酮。随着外源化学物质的破坏,它们的合成可以有助于心血交疾病,慢性肾病,骨质疏松症和免疫相关疾病。该研究应用于硅筛选的硅筛选和体外评估,用于发现CYP11B1和CYP11B2的发现。几乎使用CYP11B1和CYP11B2 Pharmacophore模型实际上筛选了一些包含环保污染物,食品添加剂和药物中的化学品。第一轮生物学测试使用过表达人类CYP11B1或CYP11B2的仓鼠细胞分析25个选定的虚拟命中。三种化合物抑制CYP11B1和CYP11B2,IC50值低于3μmM。最有效的抑制剂是环氧喹唑(IC50值为CYP11B1的623nm,CYP11B2的113nm); Flurprimidol和Ancymidol是中度抑制剂。在第二轮中,在人肾上腺H295R细胞中测试这三种化合物,内源性表达CYP11B1和CYP11B2,证实了环氧喹啉的有效抑制和由Flurprimidol和Ancymidol更温和的作用。因此,在硅筛选中,用于初始生物试验的化学品优先化和H295R细胞提供初始机械信息是识别抑制皮质类固醇合成的潜在内分泌破坏剂的有希望的策略。需要对人类暴露水平和体内评估对环氧喹啉的潜在皮质类固醇破坏作用的关键评估。

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