Li Lih-Ann, Lin Tsu-Chun Emma
Division of Environmental Health and Occupational Medicine, National Health Research Institutes, 35 Keyan Road, Zhunan, Miaoli 35053, Taiwan, ROC.
Toxicol Appl Pharmacol. 2007 May 1;220(3):252-61. doi: 10.1016/j.taap.2007.01.019. Epub 2007 Feb 8.
Giving human adrenocortical H295R cells 14 mM KCl for 24 h significantly induced not only aldosterone biosynthesis but also cortisol biosynthesis. Pre-treating the cells with polychlorinated biphenyl 126 (PCB126) further increased potassium-induced aldosterone and cortisol productions in a dose-dependent manner, but all examined concentrations of PCB126 had little effect on the yields of precursor steroids progesterone and 17-OH-progesterone. Subsequent examinations revealed that CYP11B1 and CYP11B2 genes, responsible for the respective final steps of the cortisol and aldosterone biosynthetic pathways, exhibited increased responsiveness to PCB126 under high potassium. While 10(-5) M PCB126 was needed to induce a significant increase in the basal mRNA abundance of either gene, PCB126 could enhance potassium-induced mRNA expression of CYP11B1 at 10(-7) M and CYP11B2 at 10(-9) M. Actually, potassium and PCB126 synergistically upregulated mRNA expression of both genes. Potassium raised the transcriptional rates of CYP11B1 and CYP11B2 probably through a conserved Ad5 cis-element, whereas PCB126 appeared to regulate these two genes at the post-transcriptional level. Positive potassium-PCB126 synergism was also detected in CYP11B2 enzyme activity estimated by aldosterone/progesterone ratio. In contrast, potassium and PCB126 increased CYP11B1 enzyme activity or cortisol/17-OH-progesterone ratio additively. Moreover, potassium improved the time effect of PCB126 on gene expression and enzyme activity of CYP11B2, but not the PCB126 time response of CYP11B1. These data demonstrated that potassium differentially enhanced the potency of PCB126 to induce CYP11B1- and CYP11B2-mediated steroidogenesis.
给予人肾上腺皮质H295R细胞14 mM氯化钾24小时,不仅显著诱导醛固酮生物合成,还诱导皮质醇生物合成。用多氯联苯126(PCB126)预处理细胞,可进一步以剂量依赖方式增加钾诱导的醛固酮和皮质醇生成,但所有检测浓度的PCB126对前体类固醇孕酮和17-羟孕酮的产量影响很小。随后的检测表明,负责皮质醇和醛固酮生物合成途径各自最后步骤的CYP11B1和CYP11B2基因,在高钾条件下对PCB126的反应性增强。虽然需要10⁻⁵ M的PCB126才能显著增加任一基因的基础mRNA丰度,但PCB126在10⁻⁷ M时可增强钾诱导的CYP11B1的mRNA表达,在10⁻⁹ M时可增强CYP11B2的mRNA表达。实际上,钾和PCB126协同上调这两个基因的mRNA表达。钾可能通过保守的Ad5顺式元件提高CYP11B1和CYP11B2的转录速率,而PCB126似乎在转录后水平调节这两个基因。通过醛固酮/孕酮比值估计的CYP11B2酶活性中也检测到正的钾-PCB126协同作用。相反,钾和PCB126对CYP11B1酶活性或皮质醇/17-羟孕酮比值的增加具有相加作用。此外,钾改善了PCB126对CYP11B2基因表达和酶活性的时间效应,但未改善PCB126对CYP11B1的时间反应。这些数据表明,钾以不同方式增强了PCB126诱导CYP11B1和CYP11B2介导的类固醇生成的能力。