Pastorelli Roberta, Cerri Annalisa, Mezzetti Maurizio, Consonni Erica, Airoldi Luisa
Laboratory of Molecular Toxicology, Department of Environmental Health Sciences, Istituto di Ricerche Farmacologiche Mario Negri, Milan, Italy.
Int J Cancer. 2002 Jul 1;100(1):9-13. doi: 10.1002/ijc.10463.
To determine whether variations in DNA repair genes are related to host DNA damage, we investigated the association between polymorphism in the XPD gene (codon 199, 312, 751) and the XRCC1 gene (codon 194, 399) and the presence of benzo(a)pyrene diolepoxide adducts to lymphocyte DNA (BPDE-DNA) in a group of male patients with incident lung cancer, all current smokers. BPDE-DNA adducts were analyzed by high-resolution gas chromatography-negative ion chemical ionization-mass spectrometry. XPD and XRCC1 genotypes were identified by PCR-RFLP. XRCC1 and XPD genotypes did not affect the levels and proportion of detectable BPDE-DNA adducts. The patients were also genotyped for the GSTM1 polymorphism, given its role in the detoxification of BPDE. Individuals with the GSTM1 deletion had significantly higher levels of BPDE-DNA adducts when they were XPD-Asp312Asp+Lys751Lys than carriers of at least one variant allele. No such association was found with the XRCC1 genotypes. Because of the small study population (n = 60), further statistical analysis of possible gene-gene and gene-environment would not be informative. This is the first study analysing the specific BPDE-DNA adduct in vivo with regard to polymorphic repair genes (XPD, XRCC1) and xenobiotic metabolizing gene (GSTM1). Our results raise the possibility that the XPD-Asp312Asp+Lys751Lys genotype may increase BPDE-DNA damage; this effect might be evident in individuals who are especially likely to have accumulated damage, probably because of lower detoxification capacity and high environmental exposure.
为了确定DNA修复基因的变异是否与宿主DNA损伤有关,我们在一组新诊断的肺癌男性患者(均为现吸烟者)中,研究了XPD基因(密码子199、312、751)和XRCC1基因(密码子194、399)的多态性与淋巴细胞DNA中苯并(a)芘二环氧加合物(BPDE-DNA)的存在之间的关联。通过高分辨率气相色谱-负离子化学电离-质谱法分析BPDE-DNA加合物。通过PCR-RFLP鉴定XPD和XRCC1基因型。XRCC1和XPD基因型不影响可检测到的BPDE-DNA加合物的水平和比例。鉴于GSTM1在BPDE解毒中的作用,还对患者进行了GSTM1多态性基因分型。GSTM1缺失的个体在其为XPD-Asp312Asp+Lys751Lys时,BPDE-DNA加合物水平显著高于至少携带一个变异等位基因的携带者。未发现与XRCC1基因型有此类关联。由于研究人群较小(n = 60),对可能的基因-基因和基因-环境进行进一步的统计分析将无信息价值。这是第一项关于多态性修复基因(XPD、XRCC1)和外源性物质代谢基因(GSTM1)分析体内特定BPDE-DNA加合物的研究。我们的结果提出了XPD-Asp312Asp+Lys751Lys基因型可能增加BPDE-DNA损伤的可能性;这种效应在可能因解毒能力较低和环境暴露较高而特别容易积累损伤的个体中可能很明显。