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在新腹足类的滨螺中,性畸变的诱导是通过视黄酸X受体信号通路介导的。

Imposex induction is mediated through the Retinoid X Receptor signalling pathway in the neogastropod Nucella lapillus.

作者信息

Castro L Filipe C, Lima D, Machado A, Melo C, Hiromori Y, Nishikawa J, Nakanishi T, Reis-Henriques M A, Santos M M

机构信息

Centre of Marine and Environmental Research (CIIMAR), Laboratory of Cellular and Molecular Studies, University of Porto, Rua dos Bragas 177, 4050-123, Porto, Portugal.

出版信息

Aquat Toxicol. 2007 Nov 15;85(1):57-66. doi: 10.1016/j.aquatox.2007.07.016. Epub 2007 Aug 11.

Abstract

The imposex phenomenon in female prosobranch gastropods provides one of the best documented examples of endocrine disruption in wildlife. While many field studies have demonstrated the negative impact of tributyltin (TBT) upon female gastropods, the mechanism(s) underlying imposex development has not yet been fully clarified. Over the years several hypotheses have been raised to determine the biochemical and molecular determinants of this process. Nevertheless, the interplay between the different suggested pathways (neuroendocrine, steroid and retinoid) is still unknown. Hence, through a combination of exposure experiments, we show that the 9-cis-retinoic acid (9cisRA), the proposed natural ligand of the retinoic X receptor (RXR), induces imposex in females of Nucella lapillus to the same degree as tributyltin, when administered at similar concentrations (1 microg/g body weight). Methoprene acid, a selective ligand for RXR, also induces imposex, albeit to a lower degree than that of the positive control. In contrast, testosterone significantly induced imposex, but had no effect on female penis induction, while the neuropeptide APGWamide had no effect on imposex development. These results clearly demonstrate that imposex induction in N. lapillus is mediated through the modulation of the RXR signalling pathways. In addition to the effects reported in female dogwhelks, both TBT and RA significantly increased male penis length, thus suggesting that TBT may also impact male secondary sex organs through the RXR signalling pathways. As a step for future studies, we have cloned the orthologue of N. lapillus RXR and provide experimental evidence that it binds 9cisRA. Finally, the basal expression level of RXR in several tissues of N. lapillus was determined through real-time PCR, thus showing that RXR is ubiquitously expressed in mollusc tissues, with the highest expression levels being recorded in female and male gonads. The mechanistic impacts of the overall findings to the imposex process are discussed.

摘要

雌性前鳃腹足纲动物的性畸变现象是野生动物内分泌干扰的最佳记录实例之一。虽然许多野外研究已经证明三丁基锡(TBT)对雌性腹足纲动物有负面影响,但性畸变发育的潜在机制尚未完全阐明。多年来,人们提出了几种假说来确定这一过程的生化和分子决定因素。然而,不同建议途径(神经内分泌、类固醇和视黄酸)之间的相互作用仍然未知。因此,通过一系列暴露实验,我们发现,9-顺式视黄酸(9cisRA),即视黄酸X受体(RXR)的天然配体,在以相似浓度(1微克/克体重)给药时,诱导滨螺雌性出现性畸变的程度与三丁基锡相同。甲氧普烯酸,一种RXR的选择性配体,也能诱导性畸变,尽管程度低于阳性对照。相比之下,睾酮显著诱导性畸变,但对雌性阴茎诱导没有影响,而神经肽APGWamide对性畸变发育没有影响。这些结果清楚地表明,滨螺的性畸变诱导是通过RXR信号通路的调节介导的。除了在雌性狗岩螺中报道的影响外,TBT和RA都显著增加了雄性阴茎长度,因此表明TBT也可能通过RXR信号通路影响雄性第二性器官。作为未来研究的一个步骤,我们克隆了滨螺RXR的同源物,并提供了它与9cisRA结合的实验证据。最后,通过实时PCR测定了滨螺几个组织中RXR的基础表达水平,结果表明RXR在软体动物组织中普遍表达,在雌性和雄性性腺中的表达水平最高。我们还讨论了这些总体发现对性畸变过程的机制影响。

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