首页> 外文期刊>Pharmacology and Toxicology: An International Journal >Structure-activity relationship for inhibition of CYP11B1-dependent glucocorticoid synthesis in Y1 cells by aryl methyl sulfones.
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Structure-activity relationship for inhibition of CYP11B1-dependent glucocorticoid synthesis in Y1 cells by aryl methyl sulfones.

机译:构架和活性之间的关系,以抑制CYP11B1依赖性糖皮质激素在Y1细胞中被芳基甲基砜抑制。

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摘要

The effects of xenobiotics on CYP11B1-dependent corticosterone synthesis (11 beta-hydroxylase) in mouse adrenocortical Y1 cells were studied. 3-Methylsulfonyl-2,2-bis(4-chlorophenyl)-1,1-dichloroethene (MeSO2-DDE) and some methylsulfonyl polychlorinated biphenyls (MeSO2-PCB) inhibited the corticosterone synthesis, whereas PCBs or DDE did not. This indicates a crucial role of the methyl sulfone group for this inhibitory effect. Kinetic analyses of MeSO2-DDE and the two most potent MeSO2-PCBs were conducted using Lineweaver-Burk double-reciprocal plots. The data showed a competitive inhibition of CYP11B1 by the compounds, with apparent inhibitory constants (Ki) of 1.6, 4.6, and 6.7 microM for MeSO2-DDE, 4-MeSO2-2,3,6,4'-tetrachlorobiphenyl, and 4-MeSO2-2,3,6,3',4'-pentachlorobiphenyl, respectively. For comparison, the substrate K(m) was 3.5 microM in the cells, and metyrapone and ketoconazole had apparent Ki-values of 0.8 and 0.04 microM, respectively. In contrast to all previously known inhibitors of CYP11B1, the aryl methyl sulfones are the first examples of CYP11B1 inhibitors not being heterocyclic amines or steroids. The aryl methyl sulfones are widespread environmental pollutants and their inhibition of CYP11B1 constitutes another potential mechanism for endocrine disruption. Their influence on the synthesis of adrenocortical hormones thus merits further interest.
机译:研究了异种生物素对小鼠肾上腺皮质Y1细胞中CYP11B1依赖性皮质酮合成(11β-羟化酶)的影响。 3-甲基磺酰基-2,2-双(4-氯苯基)-1,1-二氯乙烯(MeSO2-DDE)和一些甲基磺酰基多氯联苯(MeSO2-PCB)抑制了皮质酮的合成,而PCB或DDE则没有。这表明甲基砜基团对该抑制作用的关键作用。使用Lineweaver-Burk双倒数图对MeSO2-DDE和两种最有效的MeSO2-PCB进行了动力学分析。数据显示该化合物对CYP11B1具有竞争性抑制作用,对MeSO2-DDE,4-MeSO2-2、3、6、4'-四氯联苯和4-的表观抑制常数(Ki)为1.6、4.6和6.7 microM。 MeSO2-2,3,6,3',4'-五氯联苯。为了进行比较,细胞中的底物K(m)为3.5 microM,甲吡酮和酮康唑的表观Ki值分别为0.8和0.04 microM。与所有先前已知的CYP11B1抑制剂相反,芳基甲基砜是CYP11B1抑制剂的第一个实例,不是杂环胺或类固醇。芳基甲基砜是广泛的环境污染物,其对CYP11B1的抑制作用构成了另一种潜在的内分泌干扰机制。因此,它们对肾上腺皮质激素合成的影响值得进一步关注。

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