首页> 外文期刊>American Journal of Physiology >Enhanced mtDNA repair capacity protects pulmonary artery endothelial cells from oxidant-mediated death.
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Enhanced mtDNA repair capacity protects pulmonary artery endothelial cells from oxidant-mediated death.

机译:增强的mtDNA修复能力可保护肺动脉内皮细胞免受氧化剂介导的死亡。

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摘要

In rat cultured pulmonary arterial (PA), microvascular, and venous endothelial cells (ECs), the rate of mitochondrial (mt) DNA repair is predictive of the severity of xanthine oxidase (XO)-induced mtDNA damage and the sensitivity to XO-mediated cell death. To examine the importance of mtDNA damage and repair more directly, we determined the impact of mitochondrial overexpression of the DNA repair enzyme, Ogg1, on XO-induced mtDNA damage and cell death in PAECs. PAECs were transiently transfected with an Ogg1-mitochondrial targeting sequence construct. Mitochondria-selective overexpression of the transgene product was confirmed microscopically by the observation that immunoreactive Ogg1 colocalized with a mitochondria-specific tracer and, with an oligonucleotide cleavage assay, by a selective enhancement of mitochondrial Ogg1 activity. Overexpression of Ogg1 protected against both XO-induced mtDNA damage, determined by quantitative Southern analysis, and cell death as assessed by trypan blue exclusion and MTS assays. These findings show that mtDNA damage is a direct cause of cell death in XO-treated PAECs.
机译:在大鼠培养的肺动脉(PA),微血管和静脉内皮细胞(EC)中,线粒体(mt)DNA修复的速率可预测黄嘌呤氧化酶(XO)诱导的mtDNA损伤的严重程度以及对XO介导的敏感性细胞死亡。为了更直接地检查mtDNA损伤和修复的重要性,我们确定了DNA修复酶Ogg1的线粒体过表达对XO诱导的PAECs mtDNA损伤和细胞死亡的影响。用Ogg1线粒体靶向序列构建体瞬时转染PAEC。通过观察到免疫反应性Ogg1与线粒体特异性示踪剂共定位,并通过寡核苷酸裂解测定,通过选择性增强线粒体Ogg1活性,证实了转基因产物的线粒体选择性过表达。 Ogg1的过量表达可抵御XO诱导的mtDNA损伤(通过定量Southern分析确定)和细胞死亡(通过台盼蓝排除法和MTS分析评估)。这些发现表明,mtDNA损伤是XO处理的PAEC中细胞死亡的直接原因。

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