Department of Environmental Chemistry, IDAEA-CSIC, Jordi Girona 18-26, 08034, Barcelona, Spain.
Environ Sci Pollut Res Int. 2018 Feb;25(4):3849-3859. doi: 10.1007/s11356-017-0732-5. Epub 2017 Nov 25.
All-trans retinoic acid (atRA) and 9-cis retinoic acid (9cRA) are two natural derivatives of vitamin A that contribute to the normal vertebrate development by affecting gene expression through the retinoic acid signalling pathway. We show transcriptomic effects of the ectopic addition of atRA or 9cRA to zebrafish embryos at the posthatching embryonic stage. Exposure for 24 or 72 h to sublethal concentrations of both isomers resulted in characteristic transcriptome changes, in which many proliferation and development-related genes became underexpressed, whereas genes related to retinoid metabolism and some metabolic functions became overrepresented. While short and long exposures elicit essentially the same set of genes, atRA specifically induced expression of a specific subset of proteases, likely acting at the extracellular level, and of elements of the response to xenobiotics. These results reflect the well-known antiproliferative activity of retinoids, and they suggest a dysregulation of the developmental process at final stages of embryogenesis. They also indicate a potential role of endopeptidases as markers of developmental alterations, as well as their possible control by the retinoic signalling pathway. We propose to monitor mRNA levels of cyp16a, cyp16b, and cyp16c in zebrafish embryos as a bioassay for retinoid disruption.
全反式视黄酸(atRA)和 9-顺式视黄酸(9cRA)是维生素 A 的两种天然衍生物,通过影响视黄酸信号通路中的基因表达,对脊椎动物的正常发育起作用。我们展示了外源性添加 atRA 或 9cRA 对孵化后胚胎期斑马鱼的转录组效应。在亚致死浓度下暴露 24 或 72 小时后,两种异构体都导致了特征性的转录组变化,其中许多与增殖和发育相关的基因表达下调,而与视黄醇代谢和一些代谢功能相关的基因表达上调。虽然短期和长期暴露基本上都会引发相同的基因集,但 atRA 特异性地诱导了特定蛋白酶亚群的表达,这些蛋白酶可能在细胞外水平发挥作用,并且还诱导了对外源物质的反应元件的表达。这些结果反映了视黄醇众所周知的抗增殖活性,并且它们提示在胚胎发生的最后阶段发育过程失调。它们还表明内肽酶作为发育改变的标志物的潜在作用,以及它们可能受到视黄酸信号通路的控制。我们建议监测斑马鱼胚胎中 cyp16a、cyp16b 和 cyp16c 的 mRNA 水平,作为视黄酸干扰的生物测定。