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Regulation of Ahr signaling by Nrf2 during development: Effects of Nrf2a deficiency on PCB126 embryotoxicity in zebrafish (Danio rerio)

机译:Nrf2在发育过程中对Ahr信号的调节:Nrf2a缺乏对斑马鱼PCB126胚胎毒性的影响(Danio rerio)

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摘要

The embryotoxicity of co-planar PCBs is regulated by the aryl hydrocarbon receptor (Ahr), and has been reported to involve oxidative stress. Ahr participates in crosstalk with another transcription factor, Nfe2l2, or Nrf2. Nrf2 binds to antioxidant response elements to regulate the adaptive response to oxidative stress. To explore aspects of the crosstalk between Nrf2 and Ahr and its impact on development, we used zebrafish (Danio rerio) with a mutated DNA binding domain in Nrf2a (nrf2afh318/fh318), rendering these embryos more sensitive to oxidative stress. Embryos were exposed to 2 nM or 5 nM PCB126 at 24 hours post fertilization (prim-5 stage of pharyngula) and examined for gene expression and morphology at 4 days post fertilization (dpf; protruding –mouth stage). Nrf2a mutant eleutheroembryos were more sensitive to PCB126 toxicity at 4 dpf, and in the absence of treatment also displayed some subtle developmental differences from wildtype embryos, including delayed inflation of the swim bladder and smaller yolk sacs. We used qPCR to measure changes in expression of the nrf gene family, keap1a, keap1b, the ahr gene family, and known target genes. cyp1a induction by PCB126 was enhanced in the Nrf2a mutants (156-fold in wildtypes vs. 228-fold in mutants exposed to 5 nM). Decreased expression of heme oxygenase (decycling) 1 (hmox1) in the Nrf2a mutants was accompanied by increased nrf2b expression. Target genes of Nrf2a and AhR2, NAD(P)H:quinone oxidoreductase 1 (nqo1) and glutathione S-transferase, alpha-like (gsta1), showed a 2-5-fold increase in expression in the Nrf2a mutants as compared to wildtype. This study elucidates the interaction between two important transcription factor pathways in the developmental toxicity of co-planar PCBs.
机译:共平面多氯联苯的胚胎毒性受芳烃受体(Ahr)调节,据报道涉及氧化应激。 Ahr与另一种转录因子Nfe2l2或Nrf2参与串扰。 Nrf2结合抗氧化剂反应元件以调节对氧化应激的适应性反应。为了研究Nrf2与Ahr之间的串扰及其对发育的影响,我们使用了斑马鱼(Danio rerio),该斑马鱼具有Nrf2a(nrf2a fh318 / fh318 )中一个突变的DNA结合域。氧化应激。受精后24小时(咽的初生5期)将胚胎暴露于2 nM或5 nM PCB126中,并在受精后4天(dpf;突出-口期)检查基因表达和形态。 Nrf2a突变体eleutheroembryos在4 dpf时对PCB126毒性更加敏感,在不进行治疗的情况下,与野生型胚胎也表现出一些细微的发育差异,包括游泳膀胱延迟充盈和卵黄囊变小。我们使用qPCR来测量nrf基因家族,keap1a,keap1b,ahr基因家族和已知靶基因的表达变化。 Nrf2a突变体增强了PCB126对cyp1a的诱导(野生型156倍,暴露于5 nM的突变体228倍)。在Nrf2a突变体中血红素加氧酶1(hmox1)的表达减少伴随着nrf2b表达的增加。 Nrf2a和AhR2,NAD(P)H:醌氧化还原酶1(nqo1)和谷胱甘肽S转移酶,α-样(gsta1)的靶基因显示Nrf2a突变体的表达量是野生型的2-5倍。这项研究阐明了共平面PCBs发育毒性中两个重要转录因子途径之间的相互作用。

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