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The fine-tuning of endoplasmic reticulum stress response and autophagy activation during trophoblast syncytialization

机译:滋养层合胞增合体化期间内质网应力反应和自噬激活的微调

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摘要

The syncytiotrophoblast (STB) is a multinuclear layer forming the outer surface of the fetal part of the placenta deriving from villous cytotrophoblastic cell (vCTB) fusion and differentiation. This syncytialization process is characterized by morphological and biochemical alterations of the trophoblast, which probably require removal of pre-existing structures and proteins to maintain cell homeostasis and survival. Interestingly, autophagy, which allows degradation and recycling of cellular components, was shown to be activated in syncytiotrophoblast. Here we examined the involvement of endoplasmic reticulum stress (ERS) response in autophagy activation during vCTB syncytialization. We first demonstrated the activation of ERS response and autophagy during the time course of trophoblastic cell fusion and differentiation. Alteration of autophagy activation in vCTB by chemical treatments or Beclin-1 expression modulation leads to a decrease in trophoblastic syncytialization. Furthermore, ERS response inhibition by chemical treatment or siRNA strategy leads to a default in syncytialization, associated with alteration of autophagy markers and cell survival. From these data, we suggest that ERS response, by fine regulation of autophagy activation, may serve as an adaptive mechanism to promote cell survival during trophoblastic syncytialization.
机译:单身雌激素(STB)是形成胎盘的胎儿部分的外表面的多核层,其来自绒毛细胞细胞细胞(VCTB)融合和分化。该合成过程的特征在于滋养细胞的形态学和生化改变,这可能需要去除预先存在的结构和蛋白质以维持细胞稳态和存活。有趣的是,允许细胞组分的劣化和再循环的自噬被显示为在合胞胎细胞中激活。在这里,我们检查了在VCTB同义性化期间的内质网胁迫(ERS)反应的累积rescation。我们首先展示了在滋养细胞融合和分化的时间过程中激活了对响应和自噬的。通过化学处理或BECLIN-1表达调制改变VCTB中的自噬激活导致滋养细胞合体胞增生的降低。此外,通过化学处理或siRNA策略的反应抑制导致与自噬标志物和细胞存活的改变相关的默认的同义性化。从这些数据来看,我们建议通过微量对自噬激活的响应来作为促进滋养细胞合身期间促进细胞存活的自适应机制。

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