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Dexamethasone (DEX) induces Osmotic stress transcription factor 1 (Ostf1) through the Akt-GSK3β pathway in freshwater Japanese eel gill cell cultures

机译:地塞米松(DEX)通过淡水鳗e细胞培养物中的Akt-GSK3β途径诱导渗透应激转录因子1(Ostf1)

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Osmosensing and osmoregulatory processes undertaken in gills of euryhaline fish are coordinated by integrative actions of various signaling molecules/transcriptional factors. Considerable numbers of studies report the hyper- and hypo-osmoregulatory functions of fish gills, by illustrating the process of gill cell remodeling and the modulation of the expression of ion channels/transporters. Comparatively mechanistic information relayed from signal integration to transcriptional regulation in mediating gill cell functions has not yet been elucidated. In this study we demonstrate the functional links from cortisol stimulation, to Akt activation, to the expression of the transcriptional factor, Ostf1. Using the synthetic glucocorticoid receptor agonist, dexamethasone (DEX), Ostf1 expression is found to be activated via glucocorticoid receptor (GR) and mediated by the Akt-GSK3β signaling pathway. Pharmacological experiments using kinase inhibitors reveal that the expression of Ostf1 is negatively regulated by Akt activation. The inhibition of PI3K or Akt activities, by the specific kinase inhibitors (wortmannin, LY294002 or SH6), stimulates Ostf1 expression, while a reduction of GSK3β activity by LiCl reduces Ostf1 expression. Collectively, our report for the first time indicates that DEX can induce Ostf1 via GR, with the involvement of the Akt-GSK3β signaling pathway in primary eel gill cell cultures. The data also suggest that Ostf1 may play different roles in gill cell survival during seawater acclimation.
机译:在鱼腥鱼g中进行的渗透压和渗透调节过程通过各种信号分子/转录因子的整合作用来协调。通过说明of细胞重塑的过程和离子通道/转运蛋白表达的调节,大量研究报告了鱼the的高渗和低渗调节功能。还没有阐明在介导g细胞功能中从信号整合到转录调控的相对机械信息。在这项研究中,我们证明了从皮质醇刺激到Akt激活到转录因子Ostf1表达的功能联系。使用合成的糖皮质激素受体激动剂地塞米松(DEX),发现Ostf1表达可通过糖皮质激素受体(GR)激活并由Akt-GSK3β信号传导途径介导。使用激酶抑制剂的药理实验表明,Ostf1的表达受到Akt激活的负调控。特定激酶抑制剂(渥曼青霉素,LY294002或SH6)抑制PI3K或Akt活性可刺激Ostf1表达,而LiCl降低GSK3β活性则会降低Ostf1表达。总的来说,我们的报告首次表明DEX可以通过GR诱导Ostf1,而Akt-GSK3β信号传导途径参与了鳗g细胞的培养。数据还表明,在海水驯化过程中,Ostf1在g细胞存活中可能发挥不同的作用。

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