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CHK2 is essential for spindle assembly and DNA repair during the first cleavage of mouse embryos

机译:CHK2对小鼠胚胎第一次切割过程中的纺锤体组装和DNA修复至关重要

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摘要

The quality of the early embryo is critical for embryonic development and implantation. Errors during cleavage lead to aneuploidy in embryos. As a cell cycle checkpoint protein, CHK2 participates in DNA replication, cell cycle arrest and spindle assembly. However, the functions of CHK2 in early development of the mouse embryo remain largely unknown. In this study, we show that CHK2 is localized on the spindle in metaphase and mainly accumulates at spindle poles in anaphase/telophase during the first cleavage of the mouse embryo. CHK2 inhibition led to cleavage failure in early embryonic development, accompanied by abnormal spindle assembly and misaligned chromosomes. Moreover, the loss of CHK2 activity increased the level of cellular DNA damage, which resulted in oxidative stress. Then, apoptosis and autophagy were found to be active in these embryos. In summary, our results suggest that CHK2 is an essential regulator of spindle assembly and DNA repair during early embryonic development in mice.
机译:早期胚胎的质量对于胚胎发育和植入至关重要。卵裂过程中的错误导致胚胎的非整倍性。作为细胞周期检查点蛋白,CHK2参与DNA复制,细胞周期阻滞和纺锤体组装。但是,CHK2在小鼠胚胎早期发育中的功能仍然是未知的。在这项研究中,我们显示CHK2定位在中期的纺锤体上,并且主要在小鼠胚胎的第一次卵裂期间聚集在后期/末期的纺锤体极。 CHK2抑制导致早期胚胎发育中的切割失败,并伴有异常的纺锤体装配和染色体错位。此外,CHK2活性的丧失增加了细胞DNA损伤的水平,从而导致了氧化应激。然后,发现凋亡和自噬在这些胚胎中是活跃的。总而言之,我们的研究结果表明CHK2是小鼠早期胚胎发育过程中纺锤体组装和DNA修复的重要调节剂。

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