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Zygotic G2/M Cell Cycle Arrest Induced by ATM/Chk1 Activation and DNA Repair in Mouse Embryos Fertilized with Hydrogen Peroxide-Treated Epididymal Mouse Sperm

机译:ATM / Chk1激活和过氧化氢处理的附睾小鼠精子受精的小鼠胚胎中DNA修复引起的合子G2 / M细胞周期阻滞。

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摘要

Human sperm cryopreservation for assisted reproduction is compromised by ROS-induced sperm cryodamage. Our previous model study in which mouse sperm were treated with H2O2 to simulate sperm DNA-damage caused by cryopreservation-induced ROS have discovered that mouse embryos fertilized with treated sperm showed a delay in cleavage that might be associated with cell cycle arrest. The DNA-damage checkpoint pathway underlying the delay remained elusive. Moreover, our previous study have also indicated that γH2AX, the DNA-damage repair marker, was functional in mouse embryos similarly fertilized, but the completeness and correctness are unknown and warrant more studies because insufficiency of completeness and correctness of DNA repair would otherwise trigger apoptosis. Based on the aforementioned model, we used embryo culture, inverted microscope, BrdU incorporation and immunofluorescence to explore the cell cycle phase that arrest occurred and the underlying DNA-damage checkpoint pathway in mouse zygotes fertilized with H2O2-treated sperm. We also adopted Tunel to investigate the apoptosis of mouse embryos similarly fertilized at different developmental stages to testify the completeness and correctness of sperm-derived DNA-damage repair. We found G2/M cell cycle arrest in zygotes fertilized with H2O2-treated sperm. ATM (pSer-1981) and Chk1 (pSer-345) activations, rather than ATR (pSer-428) and Chk2 (pThr-68), were detected in zygotes of the treated group. The apoptosis of embryos of different developmental stages of the treated group weren’t different from those of the untreated group. In conclusions, ATM (pSer-1981)-Chk1 (pSer-345) cascade might have mediated G2/M cell cycle arrest and allowed time to facilitate sperm-derived DNA-damage repair in mouse zygotes fertilized with oxygen-stressed sperm, and the DNA-damage repair might be effective.
机译:ROS诱导的精子冷冻损伤损害了用于辅助生殖的人类精子冷冻保存。我们以前的模型研究(其中的小鼠精子用H2O2处理以模拟冷冻保存诱导的ROS引起的精子DNA损伤)发现,用精子处理过的小鼠胚胎受精后卵裂的延迟可能与细胞周期停滞有关。造成延迟的DNA损伤检查点途径仍然难以捉摸。此外,我们先前的研究还表明,DNA损伤修复标记物γH2AX在类似受精的小鼠胚胎中具有功能,但是其完整性和正确性尚不清楚,值得进行更多研究,因为DNA修复的完整性和正确性不足会触发细胞凋亡。在上述模型的基础上,我们使用胚胎培养,倒置显微镜,BrdU掺入和免疫荧光技术研究了受H2O2处理的精子受精的受精卵发生停滞的细胞周期阶段以及潜在的DNA损伤检查点途径。我们还采用Tunel来研究在不同发育阶段相似受精的小鼠胚胎的凋亡,以证明精子衍生的DNA损伤修复的完整性和正确性。我们发现受H2O2处理的精子受精的受精卵中的G2 / M细胞周期停滞。在治疗组的受精卵中检测到ATM(pSer-1981)和Chk1(pSer-345)激活,而不是ATR(pSer-428)和Chk2(pThr-68)激活。治疗组不同发育阶段胚胎的凋亡与未治疗组无差异。结论是,ATM(pSer-1981)-Chk1(pSer-345)级联可能介导了G2 / M细胞周期阻滞,并留出了时间,以促进受氧应激精子受精的小鼠受精卵中精子衍生的DNA损伤修复,并且DNA损伤修复可能是有效的。

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