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E₂ 和 FGF2 对由质膜起始的信号触发的催乳素细胞增殖的协同作用。

Cooperative effect of E₂ and FGF2 on lactotroph proliferation triggered by signaling initiated at the plasma membrane.

机构信息

Centro de Microscopía Electrónica, Instituto de Investigaciones en Ciencias de la Salud-Consejo Nacional de Investigaciones Científicas y Técnicas, Facultad de Ciencias Médicas, Universidad Nacional de Córdoba, Córdoba, Argentina.

出版信息

Am J Physiol Endocrinol Metab. 2013 Jul 1;305(1):E41-9. doi: 10.1152/ajpendo.00027.2013. Epub 2013 May 7.

Abstract

In the present work, we investigated the effect of 17β-estradiol (E₂) and basic fibroblast growth factor 2 (FGF2) on the lactotroph cell-proliferative response and the related membrane-initiated signaling pathway. Anterior pituitary mixed-cell cultures of random, cycling 3-mo-old female rats were treated with 10 nM E₂, E₂ membrane-impermeable conjugated BSA (E₂-BSA), PPT (ERα agonist), and DPN (ERβ agonist) alone or combined with FGF2 (10 ng/ml) for 30 min or 4 h. Although our results showed that the uptake of BrdU into the nucleus of lactotrophs was not modified by E₂ or FGF2 alone, a significant increase in the lactotroph uptake of BrdU was observed after E₂/FGF2 coincubation, with this effect being mimicked by PPT/FGF2. These proliferative effects were blocked by ICI 182,780 or PD-98059. The involvement of membrane ER in the proliferative response of prolactin cells induced by the steroid and FGF2 coincubation was confirmed using E₂-BSA, and the association between ERα and FGF receptor was observed after E₂/FGF2 treatment by immunoprecipitation. A significant increase in the ERK1/2 expression was noted after E₂, E₂-BSA, PPT, and FGF2 alone, which was more noticeable after E₂-BSA/FGF2, E₂/FGF2, or PPT/FGF2 treatments. This study provides evidence that E₂ and FGF2 exert a cooperative effect on the lactotroph proliferation principally by signaling initiated at the plasma membrane triggering a genomic effect mediated by MEK/ERK1/2, a common signaling pathway, that finally regulates the lactotroph population, thus contributing to pituitary plasticity.

摘要

在本研究中,我们研究了 17β-雌二醇(E₂)和碱性成纤维细胞生长因子 2(FGF2)对催乳素细胞增殖反应及相关膜起始信号通路的影响。采用随机、循环 3 月龄雌性大鼠的垂体混合细胞培养物,用 10 nM E₂、E₂ 不可渗透结合的 BSA(E₂-BSA)、PPT(ERα 激动剂)和 DPN(ERβ 激动剂)单独或联合 FGF2(10ng/ml)处理 30min 或 4h。虽然我们的结果表明,E₂ 或 FGF2 单独处理不会改变催乳素细胞核内 BrdU 的摄取,但 E₂/FGF2 共孵育后观察到催乳素摄取 BrdU 的显著增加,该效应可被 PPT/FGF2 模拟。这些增殖作用被 ICI 182,780 或 PD-98059 阻断。采用 E₂-BSA 证实了膜 ER 在类固醇和 FGF2 共孵育诱导的催乳素细胞增殖反应中的作用,并用免疫沉淀观察到 E₂/FGF2 处理后 ERα 和 FGF 受体的结合。E₂、E₂-BSA、PPT 和 FGF2 单独处理后 ERK1/2 表达显著增加,E₂-BSA/FGF2、E₂/FGF2 或 PPT/FGF2 处理后更为明显。本研究提供的证据表明,E₂ 和 FGF2 通过触发由 MEK/ERK1/2 介导的基因组效应的质膜起始信号发挥协同作用,对催乳素细胞增殖产生协同作用,这是一种共同的信号通路,最终调节催乳素细胞群,从而促进垂体可塑性。

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