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Ethanol-Induced Upregulation of 10-Formyltetrahydrofolate Dehydrogenase Helps Relieve Ethanol-Induced Oxidative Stress

机译:乙醇诱导的10-甲酰四氢叶酸脱氢酶上调有助于缓解乙醇诱导的氧化应激

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摘要

Alcoholism induces folate deficiency and increases the risk for embryonic anomalies. However, the interplay between ethanol exposure and embryonic folate status remains unclear. To investigate how ethanol exposure affects embryonic folate status and one-carbon homeostasis, we incubated zebrafish embryos in ethanol and analyzed embryonic folate content and folate enzyme expression. Exposure to 2% ethanol did not change embryonic total folate content but increased the tetrahydrofolate level approximately 1.5-fold. The expression of 10-formyltetrahydrofolate dehydrogenase (FDH), a potential intracellular tetrahydrofolate reservoir, was increased in both mRNA and protein levels. Overexpressing recombinant FDH in embryos alleviated the ethanol-induced oxidative stress in ethanol-exposed embryos. Further characterization of the zebrafish fdh promoter revealed that the −124/+40 promoter fragment was the minimal region required for transactivational activity. The results of site-directed mutagenesis and binding analysis revealed that Sp1 is involved in the basal level of expression of fdh but not in ethanol-induced upregulation of fdh. On the other hand, CEBPα was the protein that mediated the ethanol-induced upregulation of fdh, with an approximately 40-fold increase of fdh promoter activity when overexpressed in vitro. We concluded that upregulation of fdh involving CEBPα helps relieve embryonic oxidative stress induced by ethanol exposure.
机译:酒精中毒会引起叶酸缺乏,并增加发生胚胎异常的风险。然而,乙醇暴露与胚胎叶酸状态之间的相互作用尚不清楚。为了研究乙醇暴露如何影响胚胎叶酸状态和一碳稳态,我们在乙醇中孵育了斑马鱼胚胎,并分析了胚胎叶酸含量和叶酸酶表达。暴露于2%乙醇不会改变胚胎中的总叶酸含量,但会增加四氢叶酸水平约1.5倍。 10-甲酰基四氢叶酸脱氢酶(FDH),潜在的细胞内四氢叶酸贮库的表达在mRNA和蛋白质水平上均增加。胚胎中重组FDH的过表达减轻了乙醇诱导的胚胎中乙醇诱导的氧化应激。斑马鱼fdh启动子的进一步表征表明,-124 / + 40启动子片段是反式激活活性所需的最小区域。定点诱变和结合分析的结果表明,Sp1参与了fdh的基础表达水平,但不参与乙醇诱导的fdh上调。另一方面,CEBPα是介导乙醇诱导的fdh上调的蛋白质,在体外过表达时,fdh启动子活性增加了约40倍。我们得出的结论是,涉及CEBPα的fdh的上调有助于缓解乙醇暴露引起的胚胎氧化应激。

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