Kalamarz-Kubiak Hanna, Gozdowska Magdalena, Guellard Tatiana, Kulczykowska Ewa
Department of Genetics and Marine Biotechnology, Institute of Oceanology Polish, Academy of Sciences, Powstańców Warszawy 55, 81-712 Sopot, Poland
Department of Genetics and Marine Biotechnology, Institute of Oceanology Polish, Academy of Sciences, Powstańców Warszawy 55, 81-712 Sopot, Poland.
Biol Open. 2017 Oct 15;6(10):1493-1501. doi: 10.1242/bio.024844.
In this gradient perfusion study, we determined whether there is a functional relationship between oestradiol and the arginine vasotocin/isotocin (AVT/IT) system in the female round goby (). Brain explants were perfused in medium supplemented with 17β-oestradiol (E) at doses mimicking the plasma levels of this hormone in nature during the spawning-capable phase and regressing phase. We aimed to establish which pathway, genomic or non-genomic, is involved in this mechanism in different reproductive phases. For this purpose, brain explants were perfused in medium supplemented with Fulvestrant (ICI 182.780) or Actinomycin D (Act D) separately or in combination with E The contents of AVT and IT in the perfusion media were determined using high-performance liquid chromatography (HPLC) with fluorescence and UV detection. During the spawning-capable phase, the effect of E on AVT release is mediated through oestrogen receptors (ERs) via both genomic and non-genomic pathways, while IT release is mediated through ERs via a genomic pathway only. In the regressing phase, release of both nonapeptides is mediated through ERs via a genomic pathway. This is the first study to present a feasible mechanism of oestradiol action on the AVT/IT system in female fish during different phases of the reproductive cycle.
在这项梯度灌注研究中,我们确定了雌性圆腹雅罗鱼中雌二醇与精氨酸加压催产素/异催产素(AVT/IT)系统之间是否存在功能关系。脑外植体在添加了17β-雌二醇(E)的培养基中进行灌注,其剂量模拟了该激素在可产卵期和消退期自然状态下的血浆水平。我们旨在确定在不同生殖阶段,该机制涉及的是基因组途径还是非基因组途径。为此,脑外植体分别在添加氟维司群(ICI 182.780)或放线菌素D(Act D)的培养基中进行灌注,或与E联合灌注。使用配备荧光和紫外检测的高效液相色谱(HPLC)测定灌注培养基中AVT和IT的含量。在可产卵期,E对AVT释放的影响通过雌激素受体(ERs)经基因组和非基因组途径介导,而IT释放仅通过ERs经基因组途径介导。在消退期,两种九肽的释放均通过ERs经基因组途径介导。这是第一项提出雌二醇在雌性鱼类生殖周期不同阶段对AVT/IT系统作用的可行机制的研究。