首页> 外文期刊>Frontiers in Cell and Developmental Biology >Cubic Membranes Formation in Synchronized Human Hepatocellular Carcinoma Cells Reveals a Possible Role as a Structural Antioxidant Defense System in Cell Cycle Progression
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Cubic Membranes Formation in Synchronized Human Hepatocellular Carcinoma Cells Reveals a Possible Role as a Structural Antioxidant Defense System in Cell Cycle Progression

机译:在同步人肝细胞癌细胞中形成立方体膜揭示了细胞周期进展中的结构抗氧化防御系统的可能作用

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Cubic membranes (CMs) represent unique biological membrane structures with highly curved three-dimensional periodic minimal surfaces, which have been observed in a wide range of cell types and organelles under various stress conditions (e.g. starvation, virus-infection and oxidation). However, there are few reports on the biological roles of CMs, especially their roles in cell cycle. Hence, we established a stable cell population of human hepatocellular carcinoma cells (HepG2) of 100% S phase by thymidine treatment, and determined certain parameters in G2 phase released from S phase. Then we found a close relationship between CMs formation and cell cycle, and an increase in reactive oxygen species (ROS) and mitochondrial function. After the synchronization of HepG2 cells were induced, CMs were observed through transmission electron microscope in G2 phase but not in G1, S and M phase. Moreover, the increased ATP production, mitochondrial and intracellular ROS levels were also present in G2 phase, which demonstrated a positive correlation with CMs formation by Pearson correlation analysis. This study suggests that CMs may act as an antioxidant structure in response to mitochondria-derived ROS during G2 phase and thus participate in cell cycle progression.
机译:立方体膜(CMS)代表具有高弯曲的三维周期性表面积的独特的生物膜结构,其在各种应力​​条件下在各种细胞类型和细胞器中观察到的(例如饥饿,病毒感染和氧化)。但是,关于CMS的生物学作用,特别是它们在细胞周期中的角色少,尤其存在报道。因此,我们通过胸苷处理建立了100%S相的人肝细胞癌细胞(HepG2)的稳定细胞群,并确定了从S期释放的G2相中的某些参数。然后我们发现CMS形成和细胞周期之间的密切关系,以及反应性氧物质(ROS)和线粒体功能的增加。在诱导HEPG2细胞同步之后,通过在G2相中透射电子显微镜观察CMS,但不在G1,S和M相中观察。此外,在G2相中也存在增加的ATP产量,线粒体和细胞内ROS水平,其表现出通过Pearson相关分析与CMS形成的正相关。该研究表明,CMS可以在G2相期间响应于线粒体衍生的RO而作为抗氧化结构,从而参与细胞周期进展。

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