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类风湿性关节炎患者中氧化性DNA损伤修复效率低下与关键碱基切除修复基因的常见多态性及其表达水平之间的关联。

The association between inefficient repair of oxidative DNA lesions and common polymorphisms of the key base excision repair genes as well as their expression levels in patients with rheumatoid arthritis.

作者信息

Galita Grzegorz, Sarnik Joanna, Zajac Gabriela, Brzezinska Olga, Budlewski Tomasz, Poplawska Marta, Przybyłowska-Sygut Karolina, Makowska Joanna S, Poplawski Tomasz

机构信息

Department of Clinical Chemistry and Biochemistry, Medical University of Lodz, Poland.

Doctoral Study in Molecular Genetics, Cytogenetics and Medical Biophysics, Faculty of Biology and Environmental Protection, University of Lodz, Poland.

出版信息

Arch Med Sci. 2023 May 4;21(3):1010-1017. doi: 10.5114/aoms/163133. eCollection 2025.

Abstract

INTRODUCTION

Rheumatoid arthritis (RA) is a common autoimmune heterogeneous joint disease of still unknown etiology. The pathology of RA leads to chronic inflammation of the joint tissues, which causes joint cartilage and bone destruction. One of the characteristic features of RA is oxidative stress, most likely induced and stimulated by inappropriate B- and T-cell activity. This results in accumulation of oxidative DNA lesions in peripheral blood mononuclear cells (PBMCs) isolated from RA patients, as we have shown previously. We have hypothesized that oxidative stress together with an impaired DNA damage response (DDR) to oxidative DNA lesions (limited to base excision repair pathway - BER) may be responsible for increased incidence in RA patients of some diseases with a background of genetic instability such as lymphoma and lung cancer.

MATERIAL AND METHODS

Therefore, we determined the levels of oxidative DNA lesions and the kinetics of repair of DNA damage induced by tert-butyl hydroperoxide (TBH) in PBMCs of 30 RA patients and 30 healthy individuals. The metrics from the DNA damage and repair study were correlated with the genotypes of common polymorphisms of the key BER genes as well as their expression levels. DNA damage and repair were evaluated by alkaline single cell gel electrophoresis (comet assay), the genotypes of the polymorphism were determined by TaqMan SNP Genotyping Assay, and PrimeTime qPCR Assay was used to analyze the expression profile of genes related to BER.

RESULTS

We observed an association between RA occurrence and impaired DNA repair in PBMCs. After stratifying the subjects by quartiles of DNA repair efficiency observed in the controls, we found an association between increased risk of RA and inefficient DNA repair (OR and 95% CI: 2.4 and 0.34-17, 32 and 4.6-222.6, 104 and 8.5-1279.2, for the 2nd to 4th quartiles, respectively, compared with the 1st quartile). We also identified interactions between inefficient DNA repair and polymorphism of the UNG gene (rs246079), and lower expression of key BER genes - MUTH, NEIL3 and UNG.

CONCLUSIONS

Our results suggest that the genetic variations within BER genes as well as epigenetic factors may be linked with RA by the modulation of the cellular response to oxidative stress. These polymorphisms may be a useful additional marker in this disease along with the genetic and/or environmental indicators of oxidative stress. However, these conclusions need to be validated in larger studies.

摘要

引言

类风湿性关节炎(RA)是一种常见的自身免疫性异质性关节疾病,病因仍不明。RA的病理学导致关节组织的慢性炎症,进而引起关节软骨和骨质破坏。RA的特征之一是氧化应激,很可能由不适当的B细胞和T细胞活性诱导和刺激产生。正如我们之前所表明的,这导致从RA患者分离的外周血单核细胞(PBMC)中氧化DNA损伤的积累。我们推测,氧化应激以及对氧化DNA损伤的DNA损伤反应(DDR)受损(仅限于碱基切除修复途径 - BER)可能是导致RA患者中一些具有遗传不稳定性背景的疾病(如淋巴瘤和肺癌)发病率增加的原因。

材料与方法

因此,我们测定了30例RA患者和30名健康个体的PBMC中氧化DNA损伤水平以及叔丁基过氧化氢(TBH)诱导的DNA损伤修复动力学。DNA损伤和修复研究的指标与关键BER基因常见多态性的基因型及其表达水平相关。通过碱性单细胞凝胶电泳(彗星试验)评估DNA损伤和修复,通过TaqMan SNP基因分型测定法确定多态性的基因型,并使用PrimeTime qPCR测定法分析与BER相关基因的表达谱。

结果

我们观察到RA的发生与PBMC中DNA修复受损之间存在关联。在根据对照组中观察到的DNA修复效率四分位数对受试者进行分层后,我们发现RA风险增加与DNA修复效率低下之间存在关联(与第一四分位数相比,第二至第四四分位数的OR和95%CI分别为:2.4和0.34 - 17、32和4.6 - 222.6、104和8.5 - 1279.2)。我们还确定了DNA修复效率低下与UNG基因(rs246079)多态性之间的相互作用,以及关键BER基因 - MUTH、NEIL3和UNG的较低表达。

结论

我们的结果表明,BER基因内的遗传变异以及表观遗传因素可能通过调节细胞对氧化应激的反应与RA相关联。这些多态性可能是该疾病中与氧化应激的遗传和/或环境指标一起有用的额外标志物。然而,这些结论需要在更大规模的研究中得到验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b2a/12305541/0260b199d5f9/AMS-21-3-163133-g001.jpg

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