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Polymorphisms in base excision DNA repair genes and association with melanoma risk in a pilot study on Central-South Italian population

机译:在意大利中南部人口的一项初步研究中,碱基切除DNA修复基因的多态性及其与黑色素瘤风险的关系

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Base excision repair plays a key role in the removing of DNA damage from exposure to endogenous and exogenous carcinogens. The BER pathway removes alterations of a single oxidized, reduced or methylated base. Recently some studies have explored the association between risk for cutaneous melanoma and non-synonymous single-nucleotide polymorphisms (nsSNPs) in DNA-repair genes, although with contradictory results. We hypothesized that common nsSNPs of BER genes, specifically ADPRT rs1136410, XRCC1 rs25487, rs25489, rs1799782, APEX1 rs1130409, OGG1 rs1052133, LIG3 rs3136025 and MUTYH rs3219466, may contribute to risk of melanoma. The aim of this study is to investigate whether or not a correlation between these nsSNPs and melanoma risk and/or aggressiveness is present. 167 melanoma patients and 186 healthy control subjects were analysed. By multivariate statistical analysis no association was found between nsSNP and melanoma aggressiveness, while only the two XRCC1 (rs25487 and rs25489) nsSNPs showed a strong correlation (p<0.001) with melanoma risk. To our knowledge this is the first study reporting an association between BER nsSNPs and melanoma risk in Central-South Italian individuals. Our findings, if confirmed in larger population studies, will allow the inclusion of these XRCC1 nsSNPs in a screening panel for those individuals at higher risk for melanoma.
机译:碱基切除修复在消除内源性和外源性致癌物对DNA的损伤中起着关键作用。 BER途径消除了单个氧化,还原或甲基化碱基的改变。最近,一些研究探索了皮肤黑色素瘤风险与DNA修复基因中非同义单核苷酸多态性(nsSNPs)之间的关联,尽管结果相矛盾。我们假设BER基因的常见nsSNP,特别是ADPRT rs1136410,XRCC1 rs25487,rs25489,rs1799782,APEX1 rs1130409,OGG1 rs1052133,LIG3 rs3136025和MUTYH rs3219466,可能会导致黑色素瘤的风险。这项研究的目的是调查这些nsSNP与黑色素瘤风险和/或攻击性之间是否存在相关性。分析了167名黑素瘤患者和186名健康对照者。通过多变量统计分析,未发现nsSNP与黑色素瘤侵袭性之间存在关联,而只有两个XRCC1(rs25487和rs25489)nsSNPs与黑色素瘤风险有很强的相关性(p <0.001)。据我们所知,这是第一项报道BER nsSNPs与意大利中南部个体黑色素瘤风险相关的研究。如果在更大的人群研究中得到证实,我们的发现将允许将这些XRCC1 nsSNPs包括在针对黑色素瘤高风险人群的筛查小组中。

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