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ERCC1 和 ERCC2 单倍型调节原代培养淋巴细胞中诱导的 BPDE-DNA 加合物。

ERCC1 and ERCC2 haplotype modulates induced BPDE-DNA adducts in primary cultured lymphocytes.

机构信息

Department of Toxicology, School of Public Health, China Medical University, Shenyang, People's Republic of China.

出版信息

PLoS One. 2013 Apr 4;8(4):e60006. doi: 10.1371/journal.pone.0060006. Print 2013.

Abstract

BACKGROUND

Benzo[a]pyrene(B[a]P), and its ultimate metabolite Benzo[a]pyrene 7,8-diol 9,10-epoxide (BPDE), are classic DNA damaging carcinogens. DNA damage caused by BPDE is normally repaired by Nucleotide Excision Repair (NER), of which ERCC1 and ERCC2/XPD exert an indispensable role. Genetic variations in ERCC1 and ERCC2 have been related to DNA repair efficiency. In this study we used lymphocytes from healthy individuals to show that polymorphisms in ERCC1 and ERCC2 are directly associated with decreased DNA repair efficiency.

METHODS

ERCC1 (rs3212986 and rs11615) and ERCC2 (rs13181, rs1799793 and rs238406) were genotyped in 818 healthy Han individuals from the northeast of China. BPDE induced DNA adducts in lymphocytes were assessed by high performance liquid chromatography (HPLC) in 282 randomly selected participants. The effect of ERCC1 rs3212986 and ERCC2 rs238406 on DNA damage caused by B[a]P was assessed with a modified comet assay.

RESULTS

We found that the variant genotypes of ERCC1 rs3212986 and ERCC2 rs238406 were associated with the high levels of BPDE-DNA adducts. Especially ERCC1 rs3212986 A-allele variant was significantly associated with the high BPDE-DNA adducts. Haplotype analysis showed that the ERCC1 haplotype AC (OR = 2.36, 95% CI = 1.84-2.97), ERCC2 haplotype AGA (OR = 1.51, 95% CI = 1.06-2.15) and haplotype block AGAAC (OR = 5.28, 95% CI = 2.95-9.43), AGCAC (OR = 1.35 95% CI = 1.13-1.60) were linked with high BPDE-DNA adducts. In addition, we found that the combined minor alleles of ERCC1 rs3212986 and ERCC2 rs238406 were associated with a reduced DNA repair capacity.

CONCLUSIONS

Our results suggest that the variant genotypes of ERCC1 rs3212986 and ERCC2 rs238406 are associated with decreased repair efficiency of BPDE induced DNA damage, and may be predictive for an individual's DNA repair capacity in response to environmental carcinogens.

摘要

背景

苯并[a]芘(B[a]P)及其最终代谢物苯并[a]芘 7,8-二醇 9,10-环氧化物(BPDE)是经典的 DNA 损伤致癌物质。BPDE 引起的 DNA 损伤通常通过核苷酸切除修复(NER)进行修复,其中 ERCC1 和 ERCC2/XPD 发挥不可或缺的作用。ERCC1 和 ERCC2 中的遗传变异与 DNA 修复效率有关。在这项研究中,我们使用健康个体的淋巴细胞表明,ERCC1 和 ERCC2 中的多态性与 DNA 修复效率降低直接相关。

方法

在中国东北地区的 818 名健康汉族个体中,对 ERCC1(rs3212986 和 rs11615)和 ERCC2(rs13181、rs1799793 和 rs238406)进行了基因分型。在 282 名随机选择的参与者中,通过高效液相色谱法(HPLC)评估 BPDE 诱导的淋巴细胞 DNA 加合物。使用改良彗星试验评估 ERCC1 rs3212986 和 ERCC2 rs238406 对 B[a]P 引起的 DNA 损伤的影响。

结果

我们发现 ERCC1 rs3212986 和 ERCC2 rs238406 的变异基因型与高水平的 BPDE-DNA 加合物有关。特别是 ERCC1 rs3212986 A-等位基因变异与高水平的 BPDE-DNA 加合物显著相关。单体型分析显示,ERCC1 单体型 AC(OR=2.36,95%CI=1.84-2.97)、ERCC2 单体型 AGA(OR=1.51,95%CI=1.06-2.15)和单体型块 AGAAC(OR=5.28,95%CI=2.95-9.43)、AGCAC(OR=1.35 95%CI=1.13-1.60)与高水平的 BPDE-DNA 加合物相关。此外,我们发现 ERCC1 rs3212986 和 ERCC2 rs238406 的次要等位基因的组合与 DNA 修复能力降低有关。

结论

我们的结果表明,ERCC1 rs3212986 和 ERCC2 rs238406 的变异基因型与 BPDE 诱导的 DNA 损伤的修复效率降低有关,并且可能可预测个体对环境致癌物的 DNA 修复能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71da/3617188/30ff7c6c89c2/pone.0060006.g001.jpg

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