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线粒体ATP合酶8单核苷酸多态性影响小鼠的氧化应激和生存。

Mitochondrial ATP synthase 8 single-nucleotide polymorphism affects oxidative stress and survival of mice.

作者信息

Reichart Gesine, Mayer Johannes, Tokay Tursonjan, Kirschstein Timo, Lange Falko, Köhling Rüdiger

机构信息

Oscar-Langendorff-Institute of Physiology, Rostock University Medical Center, Rostock, Germany.

MSH Medical School Hamburg, Hamburg, Germany.

出版信息

Pflugers Arch. 2025 Sep 20. doi: 10.1007/s00424-025-03123-2.

Abstract

Single-nucleotide polymorphisms in mitochondrial DNA (mtDNA) encoded genes of respiratory chain complexes are known to be associated with severe diseases and life-threatening syndromes. In the assembly of the ATP synthase, the enzyme that in the final steps of oxidative phosphorylation generates ATP from ADP and inorganic phosphate, two subunits (ATP6 and ATP8) are mtDNA-encoded. In our study, we investigated the impact of a single-nucleotide polymorphism in MT-ATP8 with respect to memory function in a preclinical model. Here, we have employed two conplastic mouse strains. The mouse strain C57BL/6 J-mt served as a control with wild-type sequence in MT-ATP8, while C57BL/6 J-mt exhibited an m.7778G > T transversion. Using two age groups (3 months and 24 months), levels of reactive oxygen species (ROS), spatial learning in the Morris-Water-Maze, and long-term potentiation were assessed. Immunohistologically, the expressions of NeuN and GFAP were quantified. Additionally, the lifespan of both strains was registered. In comparison to young C57BL/6 J-mt mice, aged animals had higher ROS levels in the hippocampus. A decreased NeuN/GFAP level was found in C57BL/6 J-mt mice as well as in old animals of the control strain. Aged animals performed worse in the swimming trials, but no significant differences between both strains were detected. The long-term potentiation recordings revealed reduced synaptic plasticity in young C57BL/6 J-mt mice. Interestingly, C57BL/6 J-mt mice presented an extended lifespan compared to animals of the control strain. Together, our data suggest a minor impact of a single-nucleotide polymorphism in MT-ATP8 on spatial learning and oxidative stress depending on the neuronal tissue. In line with the concept of mitohormesis, our findings may be linked to the longevity of mice harbouring single-nucleotide polymorphisms.

摘要

已知呼吸链复合体的线粒体 DNA(mtDNA)编码基因中的单核苷酸多态性与严重疾病和危及生命的综合征有关。在 ATP 合酶的组装过程中,该酶在氧化磷酸化的最后步骤中由二磷酸腺苷(ADP)和无机磷酸生成 ATP,其中两个亚基(ATP6 和 ATP8)是由 mtDNA 编码的。在我们的研究中,我们在一个临床前模型中研究了 MT - ATP8 中的单核苷酸多态性对记忆功能的影响。在这里,我们使用了两种同基因小鼠品系。C57BL/6 J - mt 小鼠品系作为对照,其 MT - ATP8 具有野生型序列,而 C57BL/6 J - mt 小鼠表现出 m.7778G>T 的颠换。使用两个年龄组(3 个月和 24 个月),评估了活性氧(ROS)水平、在莫里斯水迷宫中的空间学习能力以及长时程增强。通过免疫组织学方法,对神经元核抗原(NeuN)和胶质纤维酸性蛋白(GFAP)的表达进行了定量。此外,记录了两个品系的寿命。与年轻的 C57BL/6 J - mt 小鼠相比,老年动物海马体中的 ROS 水平更高。在 C57BL/6 J - mt 小鼠以及对照品系的老年动物中发现 NeuN/GFAP 水平降低。老年动物在游泳试验中的表现更差,但未检测到两个品系之间的显著差异。长时程增强记录显示年轻的 C57BL/6 J - mt 小鼠的突触可塑性降低。有趣的是,与对照品系的动物相比,C57BL/6 J - mt 小鼠的寿命延长。总之,我们的数据表明 MT - ATP8 中的单核苷酸多态性对空间学习和氧化应激的影响较小,这取决于神经元组织。与线粒体应激反应概念一致,我们的发现可能与携带单核苷酸多态性的小鼠的长寿有关。

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