Transcriptional insights on the incomplete cytoplasmic maturation and developmental potential of oocytes cultured without granulosa cells in mice.

IF 3.7 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY BMC Genomics Pub Date : 2025-03-18 DOI:10.1186/s12864-025-11455-7
Yibo Wang, Yichuan Zhang, Tianjie Li, Yun Ren, Ping Zhou, Lin Fu, Chenxi Xiao, Ziying Huang, Hanji Huang, Wenfeng Xie, Yuxin Luo, Yanan Qi, Hongcui Zhao, Yang Yu, Yong Fan, Heng Pan
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Abstract

Background: Oocyte maturation is crucial for female fertility and embryonic development, encompassing nuclear and cytoplasmic maturation. Supportive cells of follicles, such as granulosa cells, are essential for oocyte growth and maturation. Oocytes can achieve nuclear maturation without granulosa cells during in vitro maturation (IVM). However, there is still a higher chance of incomplete cytoplasmic maturation for these oocytes with mature nuclei compared with oocytes cultured with granulosa cells. Oocytes with incomplete cytoplasmic maturation have lower fertilization rates and developmental potential than mature ones, although underlying mechanisms are poorly understood. Identifying key genes and signaling pathways associated with oocyte cytoplasmic maturation can help further elucidate the maturing process of oocytes and understand the impact of immature oocytes on embryonic development, throwing insights into the strategy to improve the success rate of assisted reproductive technologies.

Results: Our study investigated murine oocytes maturing with and without granulosa cells. IVM without granulosa cells yielded oocytes with lower nuclear maturation rates than IVM with granulosa cells and in vivo maturation (IVO). Even though oocytes could achieve nuclear maturation without granulosa cells, they showed incomplete cytoplasmic maturation featuring higher levels of reactive oxygen species, lower mitochondrial density, and higher proportions of cells with abnormal distributions of cortical granules. Of note, oocytes with immature and mature cytoplasm had distinct transcriptional profiles. In the immature oocytes, we observed a deficient mRNA restoration of genes in crucial regulatory pathways of cellular growth and division, potentially affecting embryonic development. Differentially expressed genes (DEGs) between immature and mature oocytes were identified to be highly expressed in different pre-implantation stages, such as the MII oocyte, the 8-cell stage, and the ICM stage. Identified DEGs were enriched in key regulatory pathways of fertilization and embryonic development, such as energy and metabolic pathways. These observations indicated that the impeded development potential of oocytes with immature cytoplasm might be the result of abnormal gene expressions during oocyte maturation.

Conclusions: We show that granulosa cells are important for both nuclear and cytoplasmic maturation of oocytes. Abnormal gene expression in oocytes with incomplete cytoplasmic maturation may be associated with potential defects in fertilization and embryonic development.

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小鼠无颗粒细胞培养卵母细胞细胞质不完全成熟和发育潜力的转录学研究。
背景:卵母细胞成熟对女性生育和胚胎发育至关重要,包括核和细胞质成熟。卵泡的支持细胞,如颗粒细胞,对卵母细胞的生长和成熟是必不可少的。卵母细胞在体外成熟(IVM)过程中可以在没有颗粒细胞的情况下实现核成熟。然而,与用颗粒细胞培养的卵母细胞相比,具有成熟细胞核的卵母细胞细胞质成熟不完全的可能性仍然更高。细胞质不完全成熟的卵母细胞受精率和发育潜力低于成熟的卵母细胞,尽管其潜在机制尚不清楚。确定与卵母细胞细胞质成熟相关的关键基因和信号通路,有助于进一步阐明卵母细胞的成熟过程,了解未成熟卵母细胞对胚胎发育的影响,为提高辅助生殖技术的成功率提供策略依据。结果:本研究考察了小鼠卵母细胞在有颗粒细胞和无颗粒细胞的情况下的成熟情况。不含颗粒细胞的IVM产生的卵母细胞核成熟率低于含颗粒细胞和体内成熟(IVO)的IVM。尽管卵母细胞可以在没有颗粒细胞的情况下实现核成熟,但它们表现出不完全的细胞质成熟,表现为活性氧水平较高,线粒体密度较低,皮质颗粒异常分布的细胞比例较高。值得注意的是,未成熟和成熟细胞质的卵母细胞具有不同的转录谱。在未成熟的卵母细胞中,我们观察到细胞生长和分裂的关键调控通路中基因的mRNA修复缺陷,可能影响胚胎发育。未成熟卵母细胞和成熟卵母细胞之间的差异表达基因(differential expression genes, DEGs)在着床前的不同阶段(如MII卵母细胞、8细胞期和ICM期)均有高表达。已鉴定的deg富集于受精和胚胎发育的关键调控途径,如能量和代谢途径。这些观察结果表明,细胞质不成熟的卵母细胞发育受阻可能是卵母细胞成熟过程中基因表达异常的结果。结论:颗粒细胞在卵母细胞核和细胞质成熟过程中起重要作用。细胞质不完全成熟的卵母细胞中基因表达异常可能与受精和胚胎发育的潜在缺陷有关。
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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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