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首页> 外文期刊>Placenta >Proteomic analysis of hypoxia-induced responses in the syncytialization of human placental cell line BeWo.
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Proteomic analysis of hypoxia-induced responses in the syncytialization of human placental cell line BeWo.

机译:蛋白质组学分析缺氧诱导的人类胎盘细胞系BeWo合胞体反应。

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Syncytiotrophoblast formation is affected by a number of pathological conditions and suppressed syncytiotrophoblast formation due to hypoxia may play a role in the pathogenesis of preeclampsia. However, the molecular basis of hypoxia-inhibited trophoblast syncytialization is poorly understood. To determine the effect of hypoxia on trophoblast syncytialization, a proteomic analysis was performed in the human cytotrophoblast cell line BeWo using two-dimensional electrophoresis and MALDI-TOF-TOF-MS. Hypoxia induced marked inhibition of BeWo cell fusion and differentiation. The proteomic profiling was established under hypoxia in BeWo cell syncytialization. The results showed that twenty proteins were significantly up-or down-regulated under hypoxia, compared with cells under normoxia. In response to hypoxia, three antioxidants, peroxiredoxin 1, peroxiredoxin 2 and 1-Cys peroxiredoxin, were down-regulated, two proteins involved in glycolysis pathway (malate dehydrogenase and enolase) were up-regulated. Theexpression of two members of the annexin family (annexin A2 and annexin A5) increased. We also found a decreased expression of 14-3-3 tau protein in hypoxia treated cells. Proteins implied in protein degradation and folding were also identified. The expression of two cytoskeleton components (keratin 1 and beta-actin) was found to be down-regulated. In addition, galectin-3 was up-regulated. These proteins have been implicated in regulating cellular oxidative stress, glycolysis, signal transduction, protein folding and degradation, cell mobility and cytoskeletal structure formation. Western blot analysis revealed that the levels of peroxiredoxin 1 and 14-3-3 tau decreased, whereas the levels of annexin A5 and annexin A2 increased in BeWo cells under hypoxia. These findings provided new insights into the molecular mechanisms in mediating cellular response to hypoxia in trophoblast syncytialization.
机译:合体滋养层细胞的形成受多种病理条件的影响,由于缺氧导致合体滋养层细胞的形成受抑制可能在先兆子痫的发病过程中起作用。但是,对缺氧抑制的滋养细胞合胞体化的分子基础了解甚少。为了确定缺氧对滋养层细胞合胞体化的影响,使用二维电泳和MALDI-TOF-TOF-MS在人细胞滋养层细胞系BeWo中进行了蛋白质组学分析。低氧诱导明显抑制BeWo细胞融合和分化。蛋白质组学分析是在缺氧条件下在BeWo细胞合胞作用下建立的。结果表明,与正常氧条件下的细胞相比,低氧条件下的二十种蛋白质显着上调或下调。响应于缺氧,三种抗氧化剂,过氧化物酶1,过氧化物酶2和1-Cys过氧化物酶被下调,参与糖酵解途径的两种蛋白质(苹果酸脱氢酶和烯醇酶)被上调。膜联蛋白家族的两个成员(膜联蛋白A2和膜联蛋白A5)的表达增加。我们还发现低氧处理细胞中14-3-3 tau蛋白的表达降低。还鉴定了暗示蛋白质降解和折叠的蛋白质。发现两个细胞骨架成分(角蛋白1和β-肌动蛋白)的表达下调。此外,galectin-3上调。这些蛋白质与调节细胞的氧化应激,糖酵解,信号转导,蛋白质折叠和降解,细胞迁移和细胞骨架结构形成有关。蛋白质印迹分析显示,在缺氧条件下,BeWo细胞中过氧化物酶1和14-3-3 tau的水平降低,而膜联蛋白A5和膜联蛋白A2的水平升高。这些发现为在滋养细胞合胞体化中介导细胞对缺氧反应的分子机制提供了新的见解。

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