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三丁基锡影响海洋轮虫 Brachionus koreanus 中视黄醇 X 受体介导的脂质代谢。

Tributyltin Affects Retinoid X Receptor-Mediated Lipid Metabolism in the Marine Rotifer Brachionus koreanus.

机构信息

Department of Biological Science, College of Science , Sungkyunkwan University , Suwon 16419 , South Korea.

Department of Biology, Faculty of Sciences , University of Porto , 4169-007 Porto , Portugal.

出版信息

Environ Sci Technol. 2019 Jul 2;53(13):7830-7839. doi: 10.1021/acs.est.9b01359. Epub 2019 Jun 19.

Abstract

To examine how tributyltin (TBT), a model obesogen, affects the lipid metabolism in the marine rotifer Brachionus koreanus, we carried out life-cycle studies and determined the in vitro and in silico interactions of retinoid X receptor (RXR) with TBT, the transcriptional levels of RXR and lipid metabolic genes, and the fatty acid content. The lethal concentration 10% (LC10) was determined to be 5.12 μg/L TBT, and negative effects on ecologically relevant end points (e.g., decreased lifespan and fecundity) were detected at 5 μg/L TBT. On the basis of these findings, subsequent experiments were conducted below 1 μg/L TBT, which did not show any negative effects on ecologically relevant end points in B. koreanus. Nile red staining analysis showed that after exposure to 1 μg/L TBT, B. koreanus stored neutral lipids and had significantly increased transcriptional levels of RXR and lipid metabolism-related genes compared to the control. However, the content of total fatty acids did not significantly change at any exposure level. In the single fatty acids profile, a significant increase in saturated fatty acids (SFAs) 14:0 and 20:0 was observed, but the contents of omega-3 and omega-6 fatty acids were significantly decreased. Also, a transactivation assay of TBT with RXR showed that TBT is an agonist of Bk-RXR with a similar fold-induction to the positive control. Taken together, these results demonstrate that TBT-modulated RXR signaling leads to increase in transcriptional levels of lipid metabolism-related genes and the synthesis of SFAs but decreases the content of polyunsaturated fatty acids (PUFAs). Our findings support a wider taxonomic scope of lipid perturbation due to xenobiotic exposure that occurs via NRs in aquatic animals.

摘要

为了研究模型肥胖物三丁基锡(TBT)如何影响海洋轮虫 Brachionus koreanus 的脂质代谢,我们进行了生命周期研究,并确定了 RXR 与 TBT 的体外和计算机模拟相互作用、RXR 和脂质代谢基因的转录水平以及脂肪酸含量。致死浓度 10%(LC10)确定为 5.12μg/L TBT,在 5μg/L TBT 时检测到对生态相关终点(例如寿命和繁殖力降低)的负面影响。基于这些发现,在 B. koreanus 中进行了低于 1μg/L TBT 的后续实验,结果表明 TBT 没有对生态相关终点产生任何负面影响。尼罗红染色分析表明,在暴露于 1μg/L TBT 后,B. koreanus 储存中性脂质,与对照组相比,RXR 和脂质代谢相关基因的转录水平显著增加。然而,在任何暴露水平下,总脂肪酸含量均无明显变化。在单一脂肪酸谱中,观察到饱和脂肪酸(SFAs)14:0 和 20:0 显著增加,但 ω-3 和 ω-6 脂肪酸含量显著降低。此外,RXR 与 TBT 的转激活测定表明,TBT 是 Bk-RXR 的激动剂,其诱导倍数与阳性对照相似。综上所述,这些结果表明,TBT 调节的 RXR 信号导致与脂质代谢相关基因的转录水平增加和 SFAs 的合成,但降低多不饱和脂肪酸(PUFAs)的含量。我们的研究结果支持由于水生动物中 NR 引起的外来化合物暴露而导致脂质扰动的更广泛的分类范围。

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