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Nova1 mediates resistance of rat pheochromocytoma cells to hypoxia-induced apoptosis via the Bax/Bcl-2/caspase-3 pathway

机译:Nova1通过Bax / Bcl-2 / caspase-3途径介导大鼠嗜铬细胞瘤细胞对缺氧诱导的凋亡的抵抗

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摘要

Neuro-oncological ventral antigen 1 (Nova1) is a well known brain-specific splicing factor. Several studies have identified Nova1 as a regulatory protein at the top of a hierarchical network. However, the function of Nova1 during hypoxia remains poorly understood. This study aimed to investigate the protective effect of Nova1 against cell hypoxia and to further explore the Bax/Bcl-2/caspase-3 pathway as a potential mechanism. During hypoxia, the survival rate of pheochromocytoma PC12 cells was gradually decreased and the apoptosis rate was gradually increased, peaking at 48 h of hypoxia. At 48 h after transfection of PC12 cells with pCMV-Myc-Nova1, the expression of Nova1 was significantly increased, with wide distribution in the cytoplasm and nucleus. Moreover, the survival rate was significantly increased and the apoptosis rate was significantly decreased. Additionally, the mRNA and protein expression levels of Bax and caspase-3 were significantly increased in the pCMV-Myc group and significantly decreased in the pCMV-Myc-Nova1 group, whereas that of Bcl-2 was significantly decreased in the pCMV-Myc group and significantly increased in the pCMV-Myc-Nova1 group. This study indicated that Nova1 could be linked to resistance to the hypoxia-induced apoptosis of PC12 cells via the Bax/Bcl-2/caspase-3 pathway, and this finding may be of significance for exploring novel mechanisms of hypoxia and the treatment of hypoxia-associated diseases.
机译:神经肿瘤腹侧抗原1(Nova1)是众所周知的大脑特异性剪接因子。多项研究已将Nova1识别为分级网络顶部的调节蛋白。但是,Nova1在缺氧期间的功能仍然知之甚少。这项研究旨在调查Nova1对细胞缺氧的保护作用,并进一步探索Bax / Bcl-2 / caspase-3途径作为潜在机制。缺氧时,嗜铬细胞瘤PC12细胞的存活率逐渐降低,凋亡率逐渐升高,在缺氧48 h达到高峰。用pCMV-Myc-Nova1转染PC12细胞后48小时,Nova1的表达显着增加,在细胞质和细胞核中广泛分布。此外,存活率显着增加,凋亡率显着降低。另外,pCMV-Myc组中Bax和caspase-3的mRNA和蛋白表达水平显着升高,pCMV-Myc-Nova1组中显着降低,而Bcl-2 mRNA和蛋白表达水平在pCMV-Myc组中显着降低。在pCMV-Myc-Nova1组中显着增加。这项研究表明Nova1可能通过Bax / Bcl-2 / caspase-3途径与低氧诱导的PC12细胞凋亡的抗性有关,这一发现对于探索低氧的新机制和治疗低氧可能具有重要意义。 -相关疾病。

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