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Combinations of Physiologic Estrogens with Xenoestrogens Alter ERK Phosphorylation Profiles in Rat Pituitary Cells

机译:生理性雌激素与异种雌激素的组合改变大鼠垂体细胞中ERK磷酸化谱。

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Background Estrogens are potent nongenomic phospho-activators of extracellular-signal–regulated kinases (ERKs). A major concern about the toxicity of xenoestrogens (XEs) is potential alteration of responses to physiologic estrogens when XEs are present simultaneously. Objectives We examined estrogen-induced ERK activation, comparing the abilities of structurally related XEs (alkylphenols and bisphenol A) to alter ERK responses induced by physiologic concentrations (1 nM) of estradiol (E2), estrone (E1), and estriol (E3). Methods We quantified hormone/mimetic-induced ERK phosphorylations in the GH3/B6/F10 rat pituitary cell line using a plate immunoassay, comparing effects with those on cell proliferation and by estrogen receptor subtype-selective ligands. Results Alone, these structurally related XEs activate ERKs in an oscillating temporal pattern similar (but not identical) to that with physiologic estrogens. The potency of all estrogens was similar (active between femtomolar and nanomolar concentrations). XEs potently disrupted physiologic estrogen signaling at low, environmentally relevant concentrations. Generally, XEs potentiated (at the lowest, subpicomolar concentrations) and attenuated (at the highest, picomolar to 100 nM concentrations) the actions of the physiologic estrogens. Some XEs showed pronounced nonmonotonic responses/inhibitions. The phosphorylated ERK and proliferative responses to receptor-selective ligands were only partially correlated. Conclusions XEs are both imperfect potent estrogens and endocrine disruptors; the more efficacious an XE, the more it disrupts actions of physiologic estrogens. This ability to disrupt physiologic estrogen signaling suggests that XEs may disturb normal functioning at life stages where actions of particular estrogens are important (e.g., development, reproductive cycling, pregnancy, menopause).
机译:背景雌激素是细胞外信号调节激酶(ERK)的有效非基因组磷酸激活剂。对异种雌激素(XEs)毒性的主要关注是当同时存在XE时对生理性雌激素反应的潜在改变。目的我们研究了雌激素诱导的ERK活化,比较了结构相关的XE(烷基酚和双酚A)改变生理浓度(1 nM)的雌二醇(E 2 ),雌酮( E 1 )和雌三醇(E 3 )。方法我们采用平板免疫测定法定量了GH 3 / B6 / F10大鼠垂体细胞系中激素/模拟物诱导的ERK磷酸化,并与雌激素受体亚型选择性配体对细胞增殖的影响进行了比较。结果这些结构相关的XE单独以与生理雌激素相似的(但不相同)的振荡时间模式激活ERK。所有雌激素的效价均相似(在飞摩尔浓度和纳摩尔浓度之间具有活性)。 XE在与环境相关的低浓度下会强烈破坏生理雌激素信号传导。通常,XE增强(最低皮摩尔浓度下)和降低(最高皮摩尔浓度至100 nM浓度)生理雌激素的作用。一些XE表现出明显的非单调响应/抑制作用。磷酸化的ERK和对受体选择性配体的增殖反应仅部分相关。结论XE既是不完善的有效雌激素又是内分泌干扰物。 XE越有效,对生理性雌激素作用的破坏就越大。这种破坏生理雌激素信号的能力表明,XE可能会在某些特定雌激素作用很重要的生命阶段(例如发育,生殖周期,怀孕,更年期)干扰正常功能。

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