HIF1A contributes to the survival of aneuploid and mosaic pre-implantation embryos.

Estefania Sanchez-Vasquez, Marianne E Bronner, Magdalena Zernicka-Goetz
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Abstract

Human fertility is suboptimal, partly due to error-prone divisions in early cleavage-stages that result in aneuploidy. Most human pre-implantation are mosaics of euploid and aneuploid cells, however, mosaic embryos with a low proportion of aneuploid cells have a similar likelihood of developing to term as fully euploid embryos. How embryos manage aneuploidy during development is poorly understood. This knowledge is crucial for improving fertility treatments and reducing developmental defects. To explore these mechanisms, we established a new mouse model of chromosome mosaicism to study the fate of aneuploid cells during pre-implantation development. We previously used the Mps1 inhibitor reversine to generate aneuploidy in embryos. Here, we found that treatment with the more specific Mps1 inhibitor AZ3146 induced chromosome segregation defects in pre-implantation embryos, similar to reversine. However, AZ3146-treated embryos showed a higher developmental potential than reversine-treated embryos. Unlike reversine-treated embryos, AZ3146-treated embryos exhibited transient upregulation of Hypoxia Inducible-Factor-1A (HIF1A) and lacked p53 upregulation. Pre-implantation embryos develop in a hypoxic environment in vivo, and hypoxia exposure in vitro reduced DNA damage in response to Mps1 inhibition and increased the proportion of euploid cells in the mosaic epiblast. Inhibiting HIF1A in mosaic embryos also decreased the proportion of aneuploid cells in mosaic embryos. Our work illuminates potential strategies to improve the developmental potential of mosaic embryos.

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HIF1A有助于非整倍体和马赛克植入前胚胎的存活。
人类的生育能力并不理想,部分原因是早期分裂阶段的分裂容易出错,导致非整倍体。然而,非整倍体细胞比例较低的镶嵌胚胎发育到足月的可能性与完全整倍体胚胎相似。人们对胚胎在发育过程中如何管理非整倍体还知之甚少。这些知识对于改善生育治疗和减少发育缺陷至关重要。为了探索这些机制,我们建立了一个新的染色体马赛克小鼠模型,以研究非整倍体细胞在植入前发育过程中的命运。此前,我们曾使用 Mps1 抑制剂逆转素在胚胎中产生非整倍体。在这里,我们发现使用特异性更强的 Mps1 抑制剂 AZ3146 会诱导植入前胚胎中的染色体分离缺陷,这一点与逆转录素相似。然而,AZ3146 处理过的胚胎比逆转录素处理过的胚胎显示出更高的发育潜能。与逆转录素处理的胚胎不同,AZ3146 处理的胚胎表现出缺氧诱导因子-1A(HIF1A)的短暂上调,而缺乏 p53 的上调。植入前胚胎在体内缺氧环境中发育,体外暴露于缺氧环境可减少对 Mps1 抑制反应的 DNA 损伤,并增加马赛克外胚层中单倍体细胞的比例。在马赛克胚胎中抑制HIF1A也会降低马赛克胚胎中非整倍体细胞的比例。我们的研究揭示了提高马赛克胚胎发育潜力的潜在策略。
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来源期刊
Journal of Microwaves, Optoelectronics and Electromagnetic Applications
Journal of Microwaves, Optoelectronics and Electromagnetic Applications Engineering-Electrical and Electronic Engineering
CiteScore
1.70
自引率
0.00%
发文量
32
审稿时长
24 weeks
期刊介绍: The Journal of Microwaves, Optoelectronics and Electromagnetic Applications (JMOe), published by the Brazilian Microwave and Optoelectronics Society (SBMO) and Brazilian Society of Electromagnetism (SBMag), is a professional, refereed publication devoted to disseminating technical information in the areas of Microwaves, Optoelectronics, Photonics, and Electromagnetic Applications. Authors are invited to submit original work in one or more of the following topics. Electromagnetic Field Analysis[...] Computer Aided Design [...] Microwave Technologies [...] Photonic Technologies [...] Packaging, Integration and Test [...] Millimeter Wave Technologies [...] Electromagnetic Applications[...] Other Topics [...] Antennas [...] Articles in all aspects of microwave, optoelectronics, photonic devices and applications will be covered in the journal. All submitted papers will be peer-reviewed under supervision of the editors and the editorial board.
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