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首页> 外文期刊>Fish & Shellfish Immunology >Molecular characterization of the aryl hydrocarbon receptor (AhR) pathway in goldfish (Carassius auratus) exposure to TCDD: The mRNA and protein levels
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Molecular characterization of the aryl hydrocarbon receptor (AhR) pathway in goldfish (Carassius auratus) exposure to TCDD: The mRNA and protein levels

机译:金鱼(Car鱼)暴露于TCDD中的芳烃受体(AhR)途径的分子表征:mRNA和蛋白质水平

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In bony fish or other aquatic vertebrates, the aryl hydrocarbon receptor (AhR) signaling pathway is initiated by exposure to polycyclic (or/and halogenated) aromatic hydrocarbons (PAHs, such as 2,3,7,8-tetrachlorodibenzo-p-dioxin, TCDD), which subsequently induces the up-regulated expression of a series of related genes (such as cytochrome P4501A (CYP1A)). However, a lack of applicable protein reagents hinders our further understanding of the AhR signaling pathway, which focuses only on gene-based investigations. The goldfish (Carassius auratus) is an ideal model for a study of environmental pollution in whole-Asian fresh water. Here, three sensitive and specific polyclonal antisera against goldfish AhR1, AhR2, and CYP1A proteins were developed. These antisera not only bound the in-vitro synthesized target proteins, but recognized the real proteins expressed in goldfish tissues, with minimal cross-reactivity to non-specific proteins. Together with the analysis of semi-quantitative RT-PCR and polyclonal-antibody-based sandwich ELISA we confirmed that goldfish AhRs differed in the expression (mRNA and protein levels) patterns among test tissues. Importantly, the relative abundance of each AhR mRNA levels from the different tissues showed no obvious consistency with their protein levels. After exposure to TCDD, goldfish AhR2 showed a more sensitivity than AhR1, and stimulated CYP1A expression directly, similar with the other reported fish models. Overall, development of these antibodies in this study will allow valuable and versatile investigations to further understand the AhR signaling pathway, and different expression (mRNA and protein) patterns represent the first step in determining the regulatory mechanisms underlying the TCDD-exposed aquatic environment
机译:在骨鱼或其他水生脊椎动物中,芳烃受体(AhR)信号传导途径是通过暴露于多环(或/和卤代)芳烃(PAH,例如2,3,7,8-四氯二苯并-对-二恶英, TCDD),随后诱导一系列相关基因(例如细胞色素P4501A(CYP1A))的表达上调。但是,缺乏适用的蛋白质试剂阻碍了我们对AhR信号通路的进一步理解,该通路仅侧重于基于基因的研究。金鱼(Car鱼)是研究整个亚洲淡水环境污染的理想模型。在这里,开发了针对金鱼AhR1,AhR2和CYP1A蛋白的三种敏感且特异的多克隆抗血清。这些抗血清不仅结合了体外合成的靶蛋白,而且识别了金鱼组织中表达的真实蛋白,并且与非特异性蛋白的交叉反应性极小。结合半定量RT-PCR和基于多克隆抗体的夹心ELISA的分析,我们证实了金鱼AhRs在测试组织之间的表达(mRNA和蛋白质水平)模式不同。重要的是,来自不同组织的每个AhR mRNA水平的相对丰度与其蛋白质水平没有明显的一致性。与其他报道的鱼类模型相似,暴露于TCDD后,金鱼AhR2比AhR1显示更高的敏感性,并直接刺激CYP1A表达。总的来说,这些抗体在这项研究中的发展将使有价值的和广泛的研究,以进一步了解AhR信号通路,不同的表达(mRNA和蛋白质)模式代表了确定暴露于TCDD的水生环境的调控机制的第一步。

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