Somogyi Virág, Horváth Tamás L, Tóth István, Bartha Tibor, Frenyó László Vilmos, Kiss Dávid Sándor, Jócsák Gergely, Kerti Annamária, Naftolin Frederick, Zsarnovszky Attila
Department of Physiology and Biochemistry, University of Veterinary Medicine , Budapest , Hungary.
Department of Animal Physiology and Animal Health, Faculty of Agricultural and Environmental Sciences, Szent István University , Páter Károly u. 1, H-2100 Gödöllő , Hungary.
Acta Vet Hung. 2016 Dec;64(4):497-513. doi: 10.1556/004.2016.046.
Thyroid hormones (THs) and oestrogens are crucial in the regulation of cerebellar development. TH receptors (TRs) mediate these hormone effects and are regulated by both hormone families. We reported earlier that THs and oestradiol (E) determine TR levels in cerebellar cell culture. Here we demonstrate the effects of low concentrations (10 M) of the endocrine disruptor (ED) bisphenol A (BPA) on the hormonal (THs, E) regulation of TRα,β in rat cerebellar cell culture. Primary cerebellar cell cultures, glia-containing and glia-destroyed, were treated with BPA or a combination of BPA and E and/or THs. Oestrogen receptor and TH receptor mRNA and protein levels were determined by real-time qPCR and Western blot techniques. The results show that BPA alone decreases, while BPA in combination with THs and/or E increases TR mRNA expression. In contrast, BPA alone increased receptor protein expressions, but did not further increase them in combination with THs and/or E. The modulatory effects of BPA were mediated by the glia; however, the degree of changes also depended on the specific hormone ligand used. The results signify the importance of the regulatory mechanisms interposed between transcription and translation and raise the possibility that BPA could act to influence nuclear hormone receptor levels independently of ligand-receptor interaction.
甲状腺激素(THs)和雌激素在小脑发育的调节中起着至关重要的作用。甲状腺激素受体(TRs)介导这些激素的作用,并受到这两个激素家族的调节。我们之前报道过,THs和雌二醇(E)决定了小脑细胞培养物中TR的水平。在此,我们展示了低浓度(10 μM)的内分泌干扰物(ED)双酚A(BPA)对大鼠小脑细胞培养物中TRα、β的激素(THs、E)调节的影响。将含有胶质细胞和去除胶质细胞的原代小脑细胞培养物用BPA或BPA与E和/或THs的组合进行处理。通过实时定量PCR和蛋白质印迹技术测定雌激素受体和甲状腺激素受体的mRNA和蛋白质水平。结果表明,单独使用BPA会降低TR mRNA表达,而BPA与THs和/或E联合使用则会增加TR mRNA表达。相反,单独使用BPA会增加受体蛋白表达,但与THs和/或E联合使用时不会进一步增加。BPA的调节作用由胶质细胞介导;然而,变化程度也取决于所使用的特定激素配体。这些结果表明了转录和翻译之间调节机制的重要性,并提出了BPA可能独立于配体-受体相互作用来影响核激素受体水平的可能性。