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首页> 外文期刊>Toxicology and Applied Pharmacology >Suppression of a DNA base excision repair gene, hOGG1, increases bleomycin sensitivity of human lung cancer cell line.
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Suppression of a DNA base excision repair gene, hOGG1, increases bleomycin sensitivity of human lung cancer cell line.

机译:DNA碱基切除修复基因hOGG1的抑制增加了博莱霉素对人肺癌细胞株的敏感性。

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Bleomycin (BLM) has been found to induce 8-oxoguanine and DNA strand breaks through producing oxidative free radicals, thereby leading to cell cycle arrest, apoptosis and cell death. Cellular DNA damage repair mechanisms such as single strand DNA break repair/base excision repair (BER) are responsible for removing bleomycin-induced DNA damage, therefore confer chemotherapeutic resistance to bleomycin. In this study, we have investigated if down-regulation of human 8-oxoguanine DNA glycosylase (hOGG1), an important BER enzyme, could alter cellular sensitivity to bleomycin, thereby reducing chemotherapeutic resistance in human tumor cell. A human lung cancer cell line with hOGG1 deficiency (A549-R) was created by ribozyme gene knockdown technique. Bleomycin cellular sensitivity and DNA/chromosomal damages were examined using MTT, colony forming assay, comet assay as well as micronucleus assay. We demonstrated that hOGG1 gene knockdown enhanced bleomycin cytotoxicity and reduced the ability of colony formation of the lung cancer cell lines. We further demonstrated that bleomycin-induced DNA strand breaks resulted in an increase of micronucleus rate. hOGG1 deficiency significantly reduced DNA damage repair capacity of the lung cancer cell lines. Our results indicated that hOGG1 deficiency allowed the accumulation of bleomycin-induced DNA damage and chromosomal breaks by compromising DNA damage repair capacity, thereby increasing cellular sensitivity to bleomycin.
机译:已发现博来霉素(BLM)诱导8-氧代鸟嘌呤和DNA链断裂,产生氧化性自由基,从而导致细胞周期停滞,凋亡和细胞死亡。细胞DNA损伤修复机制(如单链DNA断裂修复/碱基切除修复(BER))负责消除博来霉素诱导的DNA损伤,因此赋予了对博来霉素的化学治疗抗性。在这项研究中,我们研究了人类重要的BER酶8-氧鸟嘌呤DNA糖基化酶(hOGG1)的下调是否可以改变细胞对博来霉素的敏感性,从而降低对人类肿瘤细胞的化学治疗抗性。通过核酶基因敲低技术创建了具有hOGG1缺陷的人肺癌细胞系(A549-R)。使用MTT,集落形成测定,彗星测定以及微核测定检查了博来霉素的细胞敏感性和DNA /染色体损伤。我们证明了hOGG1基因敲低增强了博来霉素的细胞毒性,并降低了肺癌细胞系集落形成的能力。我们进一步证明博来霉素诱导的DNA链断裂导致微核率增加。 hOGG1缺乏症会大大降低肺癌细胞系的DNA损伤修复能力。我们的结果表明,hOGG1缺乏症通过损害DNA损伤修复能力而允许博来霉素诱导的DNA损伤和染色体断裂的积累,从而增加了细胞对博来霉素的敏感性。

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