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Hypoxia-induced ANGPTL4 sustains tumour growth and anoikis resistance through different mechanisms in scirrhous gastric cancer cell lines

机译:低氧诱导的ANGPTL4通过硬化胃癌细胞系的不同机制维持肿瘤生长和对神经无力

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摘要

Patients with scirrhous gastric cancer (SGC) frequently develop peritoneal dissemination, which leads to poor prognosis. The secreted protein angiopoietin-like-4 (ANGPTL4), which is induced by hypoxia, exerts diverse effects on cancer progression. Here, we aimed to determine the biological function of ANGPTL4 in SGC cells under hypoxia. ANGPTL4 levels were higher in SGC cells under hypoxia than in other types of gastric cancer cells. Hypoxia-induced ANGPTL4 mRNA expression was regulated by hypoxia-inducible factor-1α (HIF-1α). Under hypoxic conditions, monolayer cultures of ANGPTL4 knockdown (KD) 58As9 SGC (58As9-KD) cells were arrested in the G1 phase of the cell cycle through downregulation of c-Myc and upregulation of p27, in contrast to control 58As9-SC cells. Moreover, the ability of 58As9-KD xenografts to form tumours in nude mice was strongly suppressed. When 58As9-KD cells were cultured in suspension, hypoxia strongly increased their susceptibility to anoikis through suppression of the FAK/Src/PI3K-Akt/ERK pro-survival pathway, followed by activation of the apoptotic factors caspases-3, -8 and -9. The development of peritoneal dissemination by 58As9-KD cells was completely inhibited compared with that by 58As9-SC cells. In conclusion, ANGPTL4 is uniquely induced by hypoxia in cultured SGC cells and is essential for tumour growth and resistance to anoikis through different mechanisms.
机译:肝硬化性胃癌(SGC)患者经常发生腹膜扩散,导致预后不良。由缺氧诱导的分泌蛋白类血管生成素样4(ANGPTL4)对癌症的进展有多种作用。在这里,我们旨在确定缺氧条件下SGP细胞中ANGPTL4的生物学功能。在缺氧条件下,SGC细胞中的ANGPTL4水平高于其他类型的胃癌细胞。低氧诱导的ANGPTL4 mRNA表达受低氧诱导因子-1α(HIF-1α)调控。在缺氧条件下,与对照58As9-SC细胞相比,ANGPTL4敲低(KD)58As9 SGC(58As9-KD)细胞的单层培养物通过下调c-Myc和上调p27停滞在细胞周期的G1期。而且,强烈地抑制了58As9-KD异种移植物在裸鼠中形成肿瘤的能力。当58As9-KD细胞悬浮培养时,缺氧通过抑制FAK / Src / PI3K-Akt / ERK促存活途径,随后激活凋亡因子caspases-3,-8和-来强烈增强其对缺神经症的敏感性。 9。与58As9-SC细胞相比,58As9-KD细胞腹膜扩散的发展被完全抑制。总而言之,ANGPTL4是由缺氧在培养的SGC细胞中唯一诱导的,并且对于肿瘤生长和通过不同机制对缺氧的抵抗至关重要。

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