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Quantitation of intracellular NAD(P)H can monitor an imbalance of DNA single strand break repair in base excision repair deficient cells in real time

机译:细胞内NAD(P)H的定量可以实时监测碱基切除修复缺陷细胞中DNA单链断裂修复的失衡

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DNA single strand breaks (SSBs) are one of the most frequent DNA lesions in genomic DNA generated either by oxidative stress or during the base excision repair pathways. Here we established a new real‐time assay to assess an imbalance of DNA SSB repair by indirectly measuring PARP‐1 activation through the depletion of intracellular NAD(P)H. A water‐soluble tetrazolium salt is used to monitor the amount of NAD(P)H in living cells through its reduction to a yellow colored water‐soluble formazan dye. While this assay is not a direct method, it does not require DNA extraction or alkaline treatment, both of which could potentially cause an artifactual induction of SSBs. In addition, it takes only 4 h and requires less than a half million cells to perform this measurement. Using this assay, we demonstrated that the dose‐ and time‐dependent depletion of NAD(P)H in XRCC1‐deficient CHO cells exposed to methyl methanesulfonate. This decrease was almost completely blocked by a PARP inhibitor. Furthermore, methyl methanesulfonate reduced NAD(P)H in PARP‐1+/+cells, whereas PARP‐1–/– cells were more resistant to the decrease in NAD(P)H. These results indicate that the analysis of intracellular NAD(P)H level using water‐soluble tetrazolium salt can assess an imbalance of SSB repair in living cells in real time.
机译:DNA单链断裂(SSB)是基因组DNA中最常见的DNA损伤之一,它是由氧化应激或在碱基切除修复途径中产生的。在这里,我们建立了一种新的实时测定法,通过间接测量细胞内NAD(P)H的消耗来间接测量PARP-1激活,从而评估DNA SSB修复的失衡。水溶性四唑鎓盐可通过将其还原为黄色的水溶性甲maz染料来监测活细胞中NAD(P)H的量。尽管此测定法不是直接方法,但不需要DNA提取或碱处理,这两种方法都可能导致人为地诱导SSB。此外,仅需4小时即可完成此测量,所需的电池少于50万。使用该测定法,我们证明了暴露于甲磺酸甲酯的XRCC1缺陷型CHO细胞中NAD(P)H的剂量和时间依赖性消耗。 PARP抑制剂几乎完全阻止了这种下降。此外,甲磺酸甲酯可降低PARP-1 + / + 细胞中的NAD(P)H,而PARP-1 -/-细胞则对NAD的降低具有更强的抵抗力。 P)H。这些结果表明,使用水溶性四唑盐分析细胞内NAD(P)H水平可以实时评估活细胞中SSB修复的失衡。

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