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首页> 外文期刊>Cells >Estrogen and EGFR Pathways Regulate Notch Signaling in Opposing Directions for Multi-Ciliogenesis in the Fallopian Tube
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Estrogen and EGFR Pathways Regulate Notch Signaling in Opposing Directions for Multi-Ciliogenesis in the Fallopian Tube

机译:雌激素和eGFR途径调节凹口信号传导在输卵管中的多纤西发生的相对方向

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The lumen of the fallopian tube (FT) is lined with columnar epithelium composed of secretory and ciliated cells, both of which are important for reproduction. However, the molecular mechanism regulating cell fate remains controversial. In this study, we established a primary culture system using porcine fallopian tube epithelial cells (FTECs) to study the differentiation mechanism. We found that estrogen promoted the differentiation of multi-ciliated cells (MCCs) through estrogen receptor β, following the reduction of DLL1, a ligand of Notch. Meanwhile, epidermal growth factor (EGF), a regulator of epithelial homeostasis and differentiation, suppressed ciliogenesis by the activation of Notch signaling. However, the estrogen pathway did not affect the activation of the EGF pathway. Taken together, the differentiation of MMCs in FT depends on the balance of EGF and estrogen signaling, either of which inhibits or stimulates the Notch signaling pathway respectively.
机译:输卵管(FT)的内腔衬有由分泌细胞和纤毛细胞组成的柱状上皮,这两者都对繁殖很重要。然而,调节细胞命运的分子机制仍存在争议。在这项研究中,我们建立了使用猪输卵管上皮细胞(FTEC)的主要培养系统来研究分化机制。在减少DLL1之后,我们发现雌激素通过雌激素受体β通过雌激素受体β进行分化,缺口的缺口。同时,表皮生长因子(EGF),上皮性稳态和分化的调节剂,通过陷波信号传导的激活抑制了纤毛生成。然而,雌激素途径不影响EGF途径的活化。在一起,FT中MMC的分化取决于EGF和雌激素信号的平衡,其中否则分别抑制或刺激凹口信号通路。

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