Wincent Emma, Kubota Akira, Timme-Laragy Alicia, Jönsson Maria E, Hahn Mark E, Stegeman John J
Institute of Environmental Medicine, Karolinska Institutet, 17177 Stockholm, Sweden; Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA 02543-1050, USA.
Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA 02543-1050, USA.
Biochem Pharmacol. 2016 Jun 15;110-111:117-29. doi: 10.1016/j.bcp.2016.04.012. Epub 2016 Apr 22.
6-Formylindolo[3,2-b]carbazole (FICZ) is a potent aryl hydrocarbon receptor (AHR) agonist that is efficiently metabolized by AHR-regulated cytochrome P4501 enzymes. FICZ is a proposed physiological AHR ligand that induces its own degradation as part of a regulatory negative feedback loop. In vitro studies in cells show that CYP1 inhibition in the presence of FICZ results in enhanced AHR activation, suggesting that FICZ accumulates in the cell when its metabolism is blocked. We used zebrafish (Danio rerio) embryos to investigate the in vivo effects of FICZ when CYP1A is knocked down or inhibited. Embryos were injected with morpholino antisense oligonucleotides targeting CYP1A (CYP1A-MO), Ahr2, or a combination of both. FICZ exposure of non-injected embryos or embryos injected with control morpholino had little effect. In CYP1A-MO-injected embryos, however, FICZ dramatically increased mortality, incidence and severity of pericardial edema and circulation failure, reduced hatching frequency, blocked swim bladder inflation, and strongly potentiated expression of Ahr2-regulated genes. These effects were substantially reduced in embryos with a combined knockdown of Ahr2 and CYP1A, indicating that the toxicity was mediated at least partly by Ahr2. Co-exposure to the CYP1 inhibitor alpha-naphthoflavone (αNF) and FICZ had similar effects as the combination of CYP1A-MO and FICZ. HPLC analysis of FICZ-exposed embryos showed increased levels of FICZ after concomitant CYP1A-MO injection or αNF co-exposure. Together, these results show that a functioning CYP1/AHR feedback loop is crucial for regulation of AHR signaling by a potential physiological ligand in vivo and further highlights the role of CYP1 enzymes in regulating biological effects of FICZ.
6-甲酰基吲哚并[3,2-b]咔唑(FICZ)是一种强效芳烃受体(AHR)激动剂,可被AHR调节的细胞色素P4501酶有效代谢。FICZ是一种推测的生理性AHR配体,作为调节性负反馈环的一部分,它会诱导自身降解。细胞体外研究表明,在FICZ存在的情况下抑制CYP1会导致AHR激活增强,这表明当FICZ的代谢被阻断时,它会在细胞内积累。我们使用斑马鱼(Danio rerio)胚胎来研究敲低或抑制CYP1A时FICZ的体内效应。向胚胎注射靶向CYP1A(CYP1A-MO)、Ahr2或两者组合的吗啉代反义寡核苷酸。未注射的胚胎或注射对照吗啉代的胚胎暴露于FICZ几乎没有影响。然而,在注射CYP1A-MO的胚胎中,FICZ显著增加了死亡率、心包水肿和循环衰竭的发生率及严重程度,降低了孵化频率,阻止了鳔充气,并强烈增强了Ahr2调节基因的表达。在同时敲低Ahr2和CYP1A的胚胎中,这些效应显著降低,表明毒性至少部分由Ahr2介导。同时暴露于CYP1抑制剂α-萘黄酮(αNF)和FICZ具有与CYP1A-MO和FICZ组合相似的效应。对暴露于FICZ的胚胎进行HPLC分析表明,在同时注射CYP1A-MO或共同暴露于αNF后,FICZ的水平升高。总之,这些结果表明,功能性的CYP1/AHR反馈环对于体内潜在生理性配体调节AHR信号至关重要,并进一步突出了CYP1酶在调节FICZ生物学效应中的作用。