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Nuclear Integrity but Not Topology of Mouse Sperm Chromosome is Affected by Oxidative DNA Damage

机译:氧化性DNA损伤影响小鼠精子染色体的核完整性但不受拓扑影响。

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摘要

Recent studies have revealed a well-defined higher order of chromosome architecture, named chromosome territories, in the human sperm nuclei. The purpose of this work was, first, to investigate the topology of a selected number of chromosomes in murine sperm; second, to evaluate whether sperm DNA damage has any consequence on chromosome architecture. Using fluorescence in situ hybridization, confocal microscopy, and 3D-reconstruction approaches we demonstrate that chromosome positioning in the mouse sperm nucleus is not random. Some chromosomes tend to occupy preferentially discrete positions, while others, such as chromosome 2 in the mouse sperm nucleus are less defined. Using a mouse transgenic model (Gpx5−/−) of sperm nuclear oxidation, we show that oxidative DNA damage does not disrupt chromosome organization. However, when looking at specific nuclear 3D-parameters, we observed that they were significantly affected in the transgenic sperm, compared to the wild-type. Mild reductive DNA challenge confirmed the fragility of the organization of the oxidized sperm nucleus, which may have unforeseen consequences during post-fertilization events. These data suggest that in addition to the sperm DNA fragmentation, which is already known to modify sperm nucleus organization, the more frequent and, to date, the less highly-regarded phenomenon of sperm DNA oxidation also affects sperm chromatin packaging.
机译:最近的研究已经揭示了人类精子核中染色体结构的明确定义的更高阶,即染色体领土。这项工作的目的是,首先,研究鼠精子中选定数目的染色体的拓扑结构;其次,评估精子DNA损伤是否对染色体结构有影响。使用荧光原位杂交,共聚焦显微镜和3D重建方法,我们证明了小鼠精子核中的染色体定位不是随机的。一些染色体倾向于优先占据离散位置,而其他染色体(例如,小鼠精子核中的2号染色体)的定义较少。使用精子核氧化的小鼠转基因模型(Gpx5 -/-),我们证明了氧化性DNA损伤不会破坏染色体的组织。但是,当查看特定的核3D参数时,我们发现与野生型相比,它们在转基因精子中受到了显着影响。轻度的还原性DNA攻击证实了精子氧化核组织的脆弱性,这可能在受精后事件中产生无法预料的后果。这些数据表明,除了已知的精子DNA片段化会修饰精子核的组织外,精子DNA氧化的频率更高,迄今受到较少重视的现象也影响了精子染色质的包装。

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