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Rs3212986 多态性是一种可能的预测与吸烟相关的肺癌的生物标志物,它通过调节 ERCC1 表达来改变 DNA 修复能力。

Rs3212986 polymorphism, a possible biomarker to predict smoking-related lung cancer, alters DNA repair capacity via regulating ERCC1 expression.

机构信息

Department of Toxicology, School of Public Health, China Medical University, Shenyang, China.

Department of Thoracic Surgery Ward 2, The First Hospital of China Medical University, Shenyang, China.

出版信息

Cancer Med. 2018 Dec;7(12):6317-6330. doi: 10.1002/cam4.1842. Epub 2018 Nov 19.

Abstract

Single nucleotide polymorphisms (SNPs) in 3'UTR of key DNA repair enzyme genes are associated with inter-individual differences of DNA repair capacity (DRC) and susceptibility to a variety of human malignancies such as lung cancer. In this study, seven candidate SNPs in 3'UTR of DRC-related genes including ERCC1 (rs3212986, rs2336219, and rs735482), OGG1 (rs1052133), MLH3 (rs108621), CD3EAP (rs1007616), and PPP1R13L (rs6966) were analyzed in 300 lung cancer patients and controls from the northeast of China. Furthermore, we introduced ERCC1 (CDS+3'UTR) or CD3EAP (CDS) cDNA clone to transfect HEK293T and 16HBE cells. Cell viability between different genotypes of transfected cells exposed to BPDE was detected by CCK-8 assay, while DNA damage was visualized using γH2AX immunofluorescence and the modified comet assay. We found that minor A-allele of rs3212986 could reflect a linkage with increasing risk of NSCLC. Compared with CC genotype, AA genotype of ERCC1 rs3212986 was a high-risk factor for NSCLC (OR = 3.246; 95%CI: 1.375-7.663). Particularly stratified by smoking status in cases and controls, A allele of ERCC1 rs3212986 also exhibited an enhanced risk to develop lung cancer in smokers only (P < 0.05). Interestingly, reduced repair efficiency of DNA damage was observed in 293T ERCC1(AA) and 16HBE ERCC1(AA), while no significant difference was appeared in two genotypes of CD3EAP (3' adjacent gene of ERCC1) overexpressed cells. Our findings suggest that rs3212986 polymorphism in 3'UTR of ERCC1 overlapped with CD3EAP may affect the repair of the damage induced by BPDE mainly via regulating ERCC1 expression and become a potential biomarker to predict smoking-related lung cancer.

摘要

单核苷酸多态性(SNP)在关键 DNA 修复酶基因的 3'UTR 中与个体间 DNA 修复能力(DRC)的差异以及对各种人类恶性肿瘤(如肺癌)的易感性有关。在这项研究中,我们分析了 300 例来自中国东北地区的肺癌患者和对照者中,7 个候选 SNP(DRC 相关基因 ERCC1[rs3212986、rs2336219 和 rs735482]、OGG1[rs1052133]、MLH3[rs108621]、CD3EAP[rs1007616]和 PPP1R13L[rs6966])在 3'UTR 中的作用。此外,我们将 ERCC1(CDS+3'UTR)或 CD3EAP(CDS)cDNA 克隆转染到 HEK293T 和 16HBE 细胞中。通过 CCK-8 测定法检测不同基因型转染细胞在 BPDE 暴露下的细胞活力,并用 γH2AX 免疫荧光和改良彗星试验检测 DNA 损伤。我们发现,rs3212986 的次要 A 等位基因可能与非小细胞肺癌(NSCLC)的风险增加有关。与 CC 基因型相比,ERCC1 rs3212986 的 AA 基因型是非小细胞肺癌的高危因素(OR=3.246;95%CI:1.375-7.663)。特别是在病例和对照组中按吸烟状况进行分层,ERCC1 rs3212986 的 A 等位基因在仅吸烟者中也表现出增加患肺癌的风险(P<0.05)。有趣的是,在转染了 ERCC1(AA)的 293T 细胞和 ERCC1(AA)的 16HBE 细胞中观察到 DNA 损伤修复效率降低,而在两个 CD3EAP(ERCC1 附近的 3'基因)过表达细胞中未出现基因型差异。我们的研究结果表明,ERCC1 3'UTR 中的 rs3212986 多态性与 CD3EAP 重叠可能主要通过调节 ERCC1 表达来影响 BPDE 诱导的损伤的修复,并成为预测与吸烟相关的肺癌的潜在生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1f8/6308093/d0895df213e4/CAM4-7-6317-g001.jpg

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