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参与氧化DNA损伤修复的基因单核苷酸多态性与复发性抑郁症风险

Single-Nucleotide Polymorphisms of Genes Involved in Repair of Oxidative DNA Damage and the Risk of Recurrent Depressive Disorder.

作者信息

Czarny Piotr, Kwiatkowski Dominik, Toma Monika, Gałecki Piotr, Orzechowska Agata, Bobińska Kinga, Bielecka-Kowalska Anna, Szemraj Janusz, Berk Michael, Anderson George, Śliwiński Tomasz

机构信息

Department of Molecular Genetics, University of Łódź, Łódź, Poland.

Department of Adult Psychiatry, Medical University of Łódź, Łódź, Poland.

出版信息

Med Sci Monit. 2016 Nov 20;22:4455-4474. doi: 10.12659/msm.898091.

Abstract

BACKGROUND Depressive disorder, including recurrent type (rDD), is accompanied by increased oxidative stress and activation of inflammatory pathways, which may induce DNA damage. This thesis is supported by the presence of increased levels of DNA damage in depressed patients. Such DNA damage is repaired by the base excision repair (BER) pathway. BER efficiency may be influenced by polymorphisms in BER-related genes. Therefore, we genotyped nine single-nucleotide polymorphisms (SNPs) in six genes encoding BER proteins. MATERIAL AND METHODS Using TaqMan, we selected and genotyped the following SNPs: c.-441G>A (rs174538) of FEN1, c.2285T>C (rs1136410) of PARP1, c.580C>T (rs1799782) and c.1196A>G (rs25487) of XRCC1, c.*83A>C (rs4796030) and c.*50C>T (rs1052536) of LIG3, c.-7C>T (rs20579) of LIG1, and c.-468T>G (rs1760944) and c.444T>G (rs1130409) of APEX1 in 599 samples (288 rDD patients and 311 controls). RESULTS We found a strong correlation between rDD and both SNPs of LIG3, their haplotypes, as well as a weaker association with the c.-468T>G of APEXI which diminished after Nyholt correction. Polymorphisms of LIG3 were also associated with early onset versus late onset depression, whereas the c.-468T>G polymorphism showed the opposite association. CONCLUSIONS The SNPs of genes involved in the repair of oxidative DNA damage may modulate rDD risk. Since this is an exploratory study, the results should to be treated with caution and further work needs to be done to elucidate the exact involvement of DNA damage and repair mechanisms in the development of this disease.

摘要

背景 包括复发型(rDD)在内的抑郁症伴有氧化应激增加和炎症途径激活,这可能会导致DNA损伤。抑郁症患者中DNA损伤水平升高支持了这一论点。此类DNA损伤通过碱基切除修复(BER)途径进行修复。BER效率可能受BER相关基因多态性的影响。因此,我们对编码BER蛋白的六个基因中的九个单核苷酸多态性(SNP)进行了基因分型。材料与方法 使用TaqMan技术,我们选择并对以下SNP进行了基因分型:FEN1基因的c.-441G>A(rs174538)、PARP1基因的c.2285T>C(rs1136410)、XRCC1基因的c.580C>T(rs1799782)和c.1196A>G(rs25487)、LIG3基因的c.*83A>C(rs4796030)和c.*50C>T(rs1052536)、LIG1基因的c.-7C>T(rs20579)以及APEX1基因的c.-468T>G(rs1760944)和c.444T>G(rs1130409),共599个样本(288例rDD患者和311例对照)。结果 我们发现rDD与LIG3的两个SNP及其单倍型之间存在强相关性,与APEX1基因的c.-468T>G存在较弱关联,经Nyholt校正后这种关联减弱。LIG3的多态性也与早发性抑郁症和晚发性抑郁症相关,而c.-468T>G多态性则呈现相反的关联。结论 参与氧化DNA损伤修复的基因SNP可能会调节rDD风险。由于这是一项探索性研究,结果应谨慎对待,需要进一步开展工作以阐明DNA损伤和修复机制在该疾病发生发展中的具体作用。

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