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幽门螺杆菌感染会影响线粒体功能和 DNA 修复,从而介导胃细胞的遗传不稳定性。

Helicobacter pylori infection affects mitochondrial function and DNA repair, thus, mediating genetic instability in gastric cells.

机构信息

Department of Science, Systems and Models, University of Roskilde, Denmark; IPATIMUP - Institute of Molecular Pathology and Immunology of the University of Porto, Portugal.

出版信息

Mech Ageing Dev. 2013 Oct;134(10):460-6. doi: 10.1016/j.mad.2013.08.004. Epub 2013 Sep 3.

Abstract

Helicobacter pylori infection is an important factor for the development of atrophic gastritis and gastric carcinogenesis. However, the mechanisms explaining the effects of H. pylori infection are not fully elucidated. H. pylori infection is known to induce genetic instability in both nuclear and mitochondrial DNA of gastric epithelial cells. The mutagenic effect of H. pylori infection on nuclear DNA is known to be a consequence, in part, of a down-regulation of expression and activity of major DNA repair pathways. In this study, we demonstrate that H. pylori infection of gastric adenocarcinoma cells causes mtDNA mutations and a decrease of mtDNA content. Consequently, we show a decrease of respiration coupled ATP turnover and respiratory capacity and accordingly a lower level and activity of complex I of the electron transport chain. We wanted to investigate if the increased mutational load in the mitochondrial genome was caused by down-regulation of mitochondrial DNA repair pathways. We lowered the expression of APE-1 and YB-1, which are believed to be involved in mitochondrial base excision repair and mismatch repair. Our results suggest that both APE-1 and YB-1 are involved in mtDNA repair during H. pylori infection, furthermore, the results demonstrate that multiple DNA repair activities are involved in protecting mtDNA during infection.

摘要

幽门螺杆菌感染是萎缩性胃炎和胃癌发生的重要因素。然而,解释幽门螺杆菌感染作用的机制尚未完全阐明。已知幽门螺杆菌感染会导致胃上皮细胞的核 DNA 和线粒体 DNA 遗传不稳定性。幽门螺杆菌感染对核 DNA 的诱变作用部分是由于主要 DNA 修复途径的表达和活性下调所致。在这项研究中,我们证明了幽门螺杆菌感染胃腺癌细胞会导致 mtDNA 突变和 mtDNA 含量减少。因此,我们发现呼吸偶联 ATP 周转和呼吸能力下降,相应地电子传递链复合物 I 的水平和活性降低。我们想研究线粒体基因组中增加的突变负荷是否是由线粒体 DNA 修复途径下调引起的。我们降低了 APE-1 和 YB-1 的表达,它们被认为参与线粒体碱基切除修复和错配修复。我们的结果表明,APE-1 和 YB-1 都参与了幽门螺杆菌感染期间的 mtDNA 修复,此外,结果表明,在感染过程中,多种 DNA 修复活性参与保护 mtDNA。

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