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减数分裂相关转录本的特异性加工与人类卵母细胞的最终成熟有关。

Specific processing of meiosis-related transcript is linked to final maturation in human oocytes.

机构信息

Basic Research Laboratory - Eugin Group, Barcelona, Spain.

Department of Cell Biology, Physiology and Immunology, Universitat Autònoma de Barcelona, Bellaterra, Barcelona, Spain.

出版信息

Mol Hum Reprod. 2023 Jun 30;29(7). doi: 10.1093/molehr/gaad021.

Abstract

Human meiosis in oocytes entails an intricate regulation of the transcriptome to support late oocyte growth and early embryo development, both crucial to reproductive success. Currently, little is known about the co- and post-transcriptional mRNA processing mechanisms regulating the last meiotic phases, which contribute to transcriptome complexity and influence translation rates. We analyzed gene expression changes, splicing and pre-mRNA processing in an RNA sequencing set of 40 human oocytes at different meiotic maturation stages, matured both in vivo and in vitro. We found abundant untranslated region (UTR) processing, mostly at the 3' end, of meiosis-related genes between the germinal vesicle (GV) and metaphase II (MII) stages, supported by the differential expression of spliceosome and pre-mRNA processing related genes. Importantly, we found very few differences among GV oocytes across several durations of IVM, as long as they did not reach MII, suggesting an association of RNA processing and successful meiosis transit. Changes in protein isoforms are minor, although specific and consistent for genes involved in chromosome organization and spindle assembly. In conclusion, we reveal a dynamic transcript remodeling during human female meiosis, and show how pre-mRNA processing, specifically 3'UTR shortening, drives a selective translational regulation of transcripts necessary to reach final meiotic maturation.

摘要

人类卵母细胞中的减数分裂需要精细调节转录组,以支持晚期卵母细胞生长和早期胚胎发育,这两者对生殖成功至关重要。目前,人们对调节最后减数分裂阶段的转录后和共转录 mRNA 处理机制知之甚少,这些机制有助于转录组的复杂性并影响翻译率。我们在一组 40 个人类卵母细胞的 RNA 测序中分析了基因表达变化、剪接和前体 mRNA 处理,这些卵母细胞在体内和体外处于不同的减数成熟阶段。我们发现,在生殖泡 (GV) 和中期 II (MII) 阶段之间,与减数分裂相关的基因存在大量未翻译区 (UTR) 加工,主要在 3' 端,这得到了剪接体和前体 mRNA 处理相关基因差异表达的支持。重要的是,我们发现,只要它们没有达到 MII,GV 卵母细胞在 IVM 的几个不同时间段之间几乎没有差异,这表明 RNA 处理与成功的减数分裂转换有关。尽管涉及染色体组织和纺锤体组装的基因的蛋白质同工型变化很小,但却是特定且一致的。总之,我们揭示了人类女性减数分裂过程中的动态转录重塑,并展示了前体 mRNA 处理,特别是 3'UTR 缩短,如何驱动对达到最终减数成熟所需的转录本进行选择性翻译调控。

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