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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Leukemia inhibitory factor regulates differentiation of trophoblastlike BeWo cells through the activation of JAK/STAT and MAPK3/1 MAP kinase-signaling pathways
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Leukemia inhibitory factor regulates differentiation of trophoblastlike BeWo cells through the activation of JAK/STAT and MAPK3/1 MAP kinase-signaling pathways

机译:白血病抑制因子通过激活JAK / STAT和MAPK3 / 1 MAP激酶信号通路来调节滋养细胞样BeWo细胞的分化

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It is well established that syncytium formation involves the fusion of mononucleated trophoblasts into a multinucleated structure and the secretion of hormonal factors, such as human chorionic gonadotropin (hCG). These morphological and biochemical changes are regulated by a plethora of ligands, which upon binding to specific receptors trigger the activation of many signaling pathways, such as janus kinase/signal transducer and activator of transcription (JAK/STAT) and the mitogen-activated protein (MAP) kinase extracellular signal-regulated kinases 1 and 2 (MAPK3/1). We used the forskolin-induced syncytialization of trophoblastlike BeWo cells to characterize at the cellular level the effect mediated by leukemia inhibitory factor (LIF) on trophoblast differentiation and to describe its action at the molecular level. Forskolin induces both hCG secretion and BeWo cell syncytial fusion. Although LIF had no effect on the undifferentiated state of the cells, the cytokine generated a strong reduction in forskolin-induced hCG release. In contrast to its effect on hCG secretion, LIF exerts a synergistic effect toward forskolin-induced fusion. LIF reduced hormonal production through a STAT1- and STAT3-dependent mechanism, whereas MAPK3/1 was not involved in this process. However, both types of signaling molecules were required to mediate the action of LIF in forskolin-induced cell fusion. These data provide novel insights into the regulation of trophoblast cell differentiation by LIF and describe for the first time the molecular mechanism underlying the effect of the cytokine.
机译:众所周知,合胞体的形成涉及单核滋养细胞融合为多核结构以及激素因子(例如人绒毛膜促性腺激素(hCG))的分泌。这些形态和生化变化受到大量配体的调节,这些配体与特定受体结合后会触发许多信号通路的激活,例如janus激酶/信号转导子和转录激活子(JAK / STAT)以及有丝分裂原激活的蛋白( MAP)激酶细胞外信号调节激酶1和2(MAPK3 / 1)。我们使用了forskolin诱导的滋养细胞样BeWo细胞的合胞体化,以在细胞水平上表征白血病抑制因子(LIF)介导的对滋养细胞分化的影响,并描述其在分子水平上的作用。 Forskolin诱导hCG分泌和BeWo细胞合胞融合。尽管LIF对细胞的未分化状态没有影响,但是细胞因子在福司柯林诱导的hCG释放中产生了强烈的降低。与它对hCG分泌的作用相反,LIF对毛喉素诱导的融合发挥协同作用。 LIF通过STAT1和STAT3依赖性机制减少激素分泌,而MAPK3 / 1不参与该过程。但是,在毛喉素诱导的细胞融合中,两种信号分子都需要介导LIF的作用。这些数据为LIF调控滋养细胞分化提供了新颖的见解,并首次描述了细胞因子作用的分子机制。

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