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首页> 外文期刊>DNA repair >Down-regulation of DNA repair synthesis at DNA single-strand interruptions in poly(ADP-ribose) polymerase-1 deficient murine cell extracts.
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Down-regulation of DNA repair synthesis at DNA single-strand interruptions in poly(ADP-ribose) polymerase-1 deficient murine cell extracts.

机译:在缺乏聚(ADP-核糖)聚合酶-1的鼠细胞提取物中,在DNA单链中断时DNA修复合成的下调。

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摘要

The functional involvement of poly(ADP-ribose) polymerase-1 (PARP-1) in the repair of DNA single- and double-strand breaks, DNA base damage, and related repair substrate intermediates remains unclear. Using an in vitro DNA repair assay and cell extracts derived from PARP-1 deficient or wild-type murine embryonic fibroblasts, we investigated the DNA synthesis and ligation steps associated with the rejoining of DNA single-strand interruptions containing 3'-OH, and either 5'-OH or 5'-P termini. Complete repair leading to DNA rejoining was similar between PARP-1 deficient cells and wild-type controls and poly(ADP-ribose) synthesis was, as expected, greatly reduced in PARP-1 deficient cell extracts. The incorporation of [32P]dCMP into repaired DNA at the site of a lesion was reduced two-three-fold in PARP-1 deficient cell extracts, demonstrating a decrease in repair patch size. Addition of purified PARP-1 to levels approximating those present in wild-type extracts did not stimulate DNA repair synthesis. We conclude that PARP-1 is not required for the efficient processing and rejoining of single-strand interruptions with defined 3'-OH and 5'-OH or 5'-P termini. Decreased DNA repair synthesis observed in PARP-1 deficient cell extracts is associated with reduced cellular expression of several factors required for long-patch base excision repair (BER), including FEN-1 and DNA ligase I.
机译:尚不清楚聚(ADP-核糖)聚合酶-1(PARP-1)在DNA单链和双链断裂,DNA碱基损伤及相关修复底物中间体的修复中的功能参与。使用体外DNA修复测定法和源自PARP-1缺陷或野生型鼠类胚胎成纤维细胞的细胞提取物,我们研究了与3'-OH的DNA单链中断重新结合相关的DNA合成和连接步骤,或者5'-OH或5'-P末端。导致DNA重新结合的完全修复在PARP-1缺陷细胞和野生型对照之间是相似的,并且如预期的那样,在PARP-1缺陷细胞提取物中,聚(ADP-核糖)的合成大大减少。在PARP-1缺陷型细胞提取物中,将[32P] dCMP掺入病变部位修复的DNA中减少了2到3倍,这表明修复斑块尺寸减小了。将纯化的PARP-1添加至接近野生型提取物中存在的水平不会刺激DNA修复的合成。我们得出结论,对于有效处理和重新定义3'-OH和5'-OH或5'-P末端的单链中断,不需要PARP-1。在PARP-1缺陷细胞提取物中观察到的DNA修复合成减少与长时程碱基切除修复(BER)所需的几种因子(包括FEN-1和DNA连接酶I)的细胞表达降低有关。

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