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DNA 聚合酶 β 表达与博来霉素敏感性之间的关系。

Links between DNA polymerase beta expression and sensitivity to bleomycin.

机构信息

Department of Environmental Health, Sichuan University, West China School of Public Health, Chengdu, PR China.

出版信息

Toxicology. 2011 Mar 15;281(1-3):63-9. doi: 10.1016/j.tox.2011.01.008. Epub 2011 Jan 18.

DOI:10.1016/j.tox.2011.01.008
PMID:21251944
Abstract

Bleomycin (BLM), an important anti-tumor antibiotic, enables cell death through oxidative DNA damage mediated by reactive oxygen species (ROS). However, increasing cellular resistance has become a serious limitation to its clinical application. Base excision repair (BER), the major pathway for repairing oxidative bases, is involved in resistance of DNA-damaging anticancer drugs. DNA polymerase beta (pol β), a critical BER enzyme, has been reported to play a crucial role in combating BLM-induced oxidative DNA damage, as a result, pol β inhibition may increase the sensitivity to BLM. To test this hypothesis, we evaluated the sensitivity to BLM using mouse embryo fibroblasts (MEFs) with distinct pol β expression levels (wild-type, pol β deficiency) and explored the underlying mechanisms. The results showed that cell viability of pol β-deficient MEFs was significantly lower than that of isogenic wild type when treated with the same BLM dosage. In addition, increased ROS level, DNA single strand breaks, and chromosomal breakage were observed in pol β deficient cells, indicating impaired DNA repair and enhanced oxidative DNA damage under pol β deficiency. In agreement with the findings, an enhanced hprt gene mutation frequency was also detected in pol β null cells. In summary, this study demonstrated that BLM-induced DNA damage could be repaired through BER pathway and absence of pol β allows oxidative DNA/chromosome damage and gene mutation, which contributes to BLM hypersensitivity.

摘要

博莱霉素(BLM)是一种重要的抗肿瘤抗生素,通过活性氧(ROS)介导的氧化 DNA 损伤来诱导细胞死亡。然而,细胞耐药性的增加已成为其临床应用的严重限制。碱基切除修复(BER)是修复氧化碱基的主要途径,参与了 DNA 损伤抗癌药物的耐药性。DNA 聚合酶β(pol β)是一种关键的 BER 酶,据报道在对抗 BLM 诱导的氧化 DNA 损伤方面发挥着至关重要的作用,因此,抑制 pol β 可能会增加 BLM 的敏感性。为了验证这一假说,我们使用具有不同 pol β 表达水平(野生型、pol β 缺陷型)的小鼠胚胎成纤维细胞(MEFs)评估了对 BLM 的敏感性,并探讨了其潜在机制。结果表明,相同 BLM 剂量处理时,pol β 缺陷型 MEFs 的细胞活力明显低于同基因野生型细胞。此外,在 pol β 缺陷型细胞中观察到 ROS 水平、DNA 单链断裂和染色体断裂增加,表明在 pol β 缺陷下 DNA 修复受损和氧化 DNA 损伤增强。与研究结果一致,在 pol β 缺失细胞中还检测到 hprt 基因突变频率增加。综上所述,本研究表明 BLM 诱导的 DNA 损伤可通过 BER 途径修复,而 pol β 的缺失允许氧化 DNA/染色体损伤和基因突变,从而导致 BLM 超敏反应。

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