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Eccentric localization of catalase to protect chromosomes from oxidative damages during meiotic maturation in mouse oocytes

机译:过氧化氢酶的偏心定位可保护染色体在小鼠卵母细胞减数分裂成熟过程中免受氧化损伤

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摘要

The maintenance of genomic integrity and stability is essential for the survival of every organism. Unfortunately, DNA is vulnerable to attack by a variety of damaging agents. Oxidative stress is a major cause of DNA damage because reactive oxygen species (ROS) are produced as by-products of normal cellular metabolism. Cells have developed eloquent antioxidant defense systems to protect themselves from oxidative damage along with aerobic metabolism. Here, we show that catalase (CAT) is present in mouse oocytes to protect the genome from oxidative damage during meiotic maturation. CAT was expressed in the nucleus to form unique vesicular structures. However, after nuclear envelope breakdown, CAT was redistributed in the cytoplasm with particular focus at the chromosomes. Inhibition of CAT activity increased endogenous ROS levels, but did not perturb meiotic maturation. In addition, CAT inhibition produced chromosomal defects, including chromosome misalignment and DNA damage. Therefore, our data suggest that CAT is required not only to scavenge ROS, but also to protect DNA from oxidative damage during meiotic maturation in mouse oocytes.
机译:维持基因组完整性和稳定性对于每种生物的生存至关重要。不幸的是,DNA容易受到各种破坏剂的攻击。氧化应激是DNA损伤的主要原因,因为活性氧(ROS)是正常细胞代谢的副产物。细胞已经开发出雄辩的抗氧化防御系统,以保护自身免受氧化损伤以及有氧代谢。在这里,我们显示过氧化氢酶(CAT)存在于小鼠卵母细胞中,以保护基因组免受减数分裂成熟过程中的氧化损伤。 CAT在细胞核中表达以形成独特的囊泡结构。但是,在核被膜破裂后,CAT重新分布在细胞质中,尤其集中在染色体上。抑制CAT活性可增加内源性ROS水平,但不会干扰减数分裂的成熟。此外,CAT抑制还会产生染色体缺陷,包括染色体错位和DNA损伤。因此,我们的数据表明,CAT不仅需要清除ROS,而且还需要保护DNA免受小鼠卵母细胞减数分裂成熟过程中的氧化损伤。

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