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首页> 外文期刊>Hippocampus >Bisphenol A regulates the estrogen receptor alpha signaling in developing hippocampus of male rats through estrogen receptor.
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Bisphenol A regulates the estrogen receptor alpha signaling in developing hippocampus of male rats through estrogen receptor.

机译:双酚A通过雌激素受体调节雄性大鼠海马发育中的雌激素受体α信号。

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摘要

Bisphenol A (BPA), one of the most common environmental endocrine disruptors, has been recognized to have wide adverse effects on the brain development and behavior. These adversities are related to its ability to bind estrogen receptor (ER) with subsequent alteration of its expression in the target areas. However, very little is known about whether BPA exposure also affects ER phosphorylation and its translocation to nucleus during postnatal development, two critical steps for its function. Here, we found that during development from postnatal day 7 (P7) to P21, the alpha subtype of ER (ERα) in the hippocampus of male rats experienced remarkable alterations in terms of its expression, phosphorylation and translocation to nucleus. Exposure to low level of BPA had bidirectional, development-dependent effects on the expression of ERα mRNA and protein, but decreased ERα phosphorylation and impaired its translocation to nucleus throughout the period investigated. Treatment with low dose of ICI 182,780 (ICI), an ER antagonist to block the binding of ER with BPA, reversed the altered ERα following BPA exposure, highlighting critical involvement of ER. Moreover, ICI treatment rescued the hippocampus-dependent behavioral deficits in the adult rats experiencing early-life BPA exposure. Overall, our results indicate that BPA interferes with the ERα signaling in the developing hippocampus in an ER-dependent manner, which may underlie its adverse behavioral and cognitive outcomes in adult animals.
机译:双酚A(BPA)是最常见的环境内分泌干扰物之一,已被公认对大脑的发育和行为具有广泛的不利影响。这些逆境与其结合雌激素受体(ER)的能力以及随后在目标区域表达的改变有关。然而,关于双酚A暴露是否还会影响产后发育过程中ER的磷酸化及其向核的转运(这是其功能的两个关键步骤),人们所知甚少。在这里,我们发现在从出生后第7天(P7)到P21的发育过程中,雄性大鼠海马中的ER(ERα)的亚型经历了表达,磷酸化和易位至核的显着改变。在整个研究过程中,低水平的BPA暴露对ERαmRNA和蛋白质的表达具有双向,发育依赖性的影响,但降低ERα磷酸化并损害其向核的转运。低剂量ICI 182,780(ICI)(一种阻断ER与BPA结合的ER拮抗剂)治疗可逆转BPA暴露后改变的ERα,突显了ER的关键参与。此外,ICI治疗挽救了经历早期BPA暴露的成年大鼠的海马依赖性行为缺陷。总体而言,我们的结果表明,BPA以ER依赖性方式干扰正在发育的海马中的ERα信号传导,这可能是其在成年动物中不良的行为和认知结果的基础。

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