Qin Fang, Wang Xueqin, Liu Shaozhen, Zheng Yao, Li Meng, Zhang Yingying, Wang Zaizhao
College of Animal Science and Technology, Northwest A&F University, Shaanxi Key Laboratory of Molecular Biology for Agriculture, Yangling, Shaanxi 712100, China.
College of Animal Science and Technology, Northwest A&F University, Shaanxi Key Laboratory of Molecular Biology for Agriculture, Yangling, Shaanxi 712100, China.
Gene. 2014 Nov 15;552(1):8-17. doi: 10.1016/j.gene.2014.09.006. Epub 2014 Sep 4.
The 17α-ethinylestradiol (EE2), which could induce estrogenic effects, is found in different aquatic systems. The current study aimed to assess in vivo effects of short-term EE2 exposure on the transcriptional activity of genes in the brain and gonad tissues in order to characterize the mode of action of EE2 on the hypothalamus-pituitary-gonad axis in rare minnow (Gobiocypris rarus). The full length cDNAs of fshβ, lhβ, fshr and lhr were first characterized in G. rarus. The homology and phylogenetic analyses of the amino acid sequences revealed that these four genes share high identity in cyprinid fish. The tissue distribution analysis by qRT-PCR showed that fshβ and lhβ were mainly expressed in the brain and fshr and lhr were mainly expressed in gonads. Adult G. rarus was exposed to EE2 at 1, 5, 25 and 125 ng/L for 3 and 6 days and the expression of brain cyp19a1b, fshβ and lhβ, estrogen receptors (esr1, esr2a, and esr2b) and gonadal fshr, lhr and cyp19a1a were assessed. Cyp19a1b was significantly up-regulated in the brains of female exposed to EE2 at 1-125 ng/L for 6 days. The brain lhβ, but not fshβ was strongly suppressed in most EE2 exposure groups of both sexes. The brain esr2b was inhibited in both sexes exposed to EE2 at all of the four concentrations for 6 days. Esr2a was up-regulated in the females by 6-day EE2 treatment at 1 and 25 ng/L. The high responsiveness of brain lhβ and esr2s to EE2 and their significant correlation in both sexes suggested that the transcriptional activity of Esr2s could play key roles in modulation of lhβ expression via direct action on gonadotropic cells in response to EE2. In gonads, fshr was strongly inhibited by EE2 in males, while lhr was significantly stimulated by EE2 in females. Cyp19a1a was inhibited by EE2 in both sexes. The positive correlations of gene expressions of both fshr and lhr with cyp19a1a in testes suggest that the suppression of 17α-estradiol (E2) synthesis in testis by exogenous estrogen could mediate via both Fsh/Fshr and Lh/Lhr signaling in male G. rarus.
17α-乙炔雌二醇(EE2)可诱导雌激素效应,在不同的水生系统中均有发现。本研究旨在评估短期暴露于EE2对稀有鮈鲫(Gobiocypris rarus)脑和性腺组织中基因转录活性的体内效应,以阐明EE2对下丘脑-垂体-性腺轴的作用模式。首先对稀有鮈鲫的fshβ、lhβ、fshr和lhr全长cDNA进行了鉴定。氨基酸序列的同源性和系统发育分析表明,这四个基因在鲤科鱼类中具有高度同源性。通过qRT-PCR进行的组织分布分析表明,fshβ和lhβ主要在脑中表达,fshr和lhr主要在性腺中表达。将成年稀有鮈鲫暴露于1、5、25和125 ng/L的EE2中3天和6天,然后评估脑cyp19a1b、fshβ和lhβ、雌激素受体(esr1、esr2a和esr2b)以及性腺fshr、lhr和cyp19a1a的表达。在暴露于1-125 ng/L EE2 6天的雌性稀有鮈鲫脑中,Cyp19a1b显著上调。在大多数EE2暴露组中,两性的脑lhβ受到强烈抑制,但fshβ未受影响。在暴露于所有四种浓度EE2 6天的两性中,脑esr2b均受到抑制。在1和25 ng/L的EE2处理6天的雌性中,esr2a上调。脑lhβ和esr2s对EE2的高反应性以及它们在两性中的显著相关性表明,Esr2s的转录活性可能通过直接作用于促性腺细胞来调节lhβ的表达,从而响应EE2。在性腺中,EE2强烈抑制雄性中的fshr,而显著刺激雌性中的lhr。EE2在两性中均抑制Cyp19a1a。睾丸中fshr和lhr的基因表达与cyp19a1a呈正相关,这表明外源性雌激素对雄性稀有鮈鲫睾丸中17α-雌二醇(E2)合成的抑制可能通过Fsh/Fshr和Lh/Lhr信号传导介导。