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体外成熟过程中转录抑制对牛卵母细胞蛋白质组的影响†

The impact of transcription inhibition during in vitro maturation on the proteome of bovine oocytes†.

作者信息

Gegenfurtner Katrin, Flenkenthaler Florian, Fröhlich Thomas, Wolf Eckhard, Arnold Georg J

机构信息

Laboratory for Functional Genome Analysis (LAFUGA), Gene Center, LMU Munich, Germany.

Department of Veterinary Sciences, Chair for Molecular Animal Breeding and Biotechnology, Gene Center, LMU Munich, Germany.

出版信息

Biol Reprod. 2020 Oct 29;103(5):1000-1011. doi: 10.1093/biolre/ioaa149.

Abstract

Proper oocyte maturation is a prerequisite for successful reproduction and requires the resumption of meiosis to the metaphase II stage (MII). In bovine oocytes, nuclear maturation has been shown to occur in in vitro maturing cumulus-enclosed oocytes (COCs) in the absence of transcription, but their developmental capacity is reduced compared to transcriptionally competent COCs. To assess the impact of transcription during in vitro maturation of bovine COCs on the quantitative oocyte proteome, a holistic nano-LC-MS/MS analysis of germinal vesicle oocytes and MII oocytes matured with or without addition of the transcription inhibitor actinomycin D (ActD) was carried out. Analyzing eight biological replicates for each of the three groups, a total of 2018 proteins was identified. These could be clearly classified into proteins depending or not depending on transcription during oocyte maturation. Proteins whose abundance increased after maturation irrespective of transcription inhibition - and hence independent of transcription - were related to the cell cycle, reflecting the progression of meiosis, and to cellular component organization, which is crucial for cytoplasmic maturation. In contrast, transcription-dependent proteins were associated with cell-cell adhesion and translation. Since a high rate of protein synthesis in oocytes has been shown to correlate with their developmental competence, oocyte maturation in transcriptionally impaired COCs is apparently disturbed. Our experiments reveal that impaired transcription during in vitro maturation of COCs has a substantial effect on specific components of the oocyte proteome, and that transcription is required for specific classes of oocyte proteins predominantly involved in translation.

摘要

卵母细胞的正常成熟是成功繁殖的前提条件,需要减数分裂恢复至中期II阶段(MII)。在牛卵母细胞中,已证明体外成熟的卵丘包裹卵母细胞(COCs)在无转录的情况下会发生核成熟,但其发育能力与具有转录活性的COCs相比有所降低。为了评估牛COCs体外成熟过程中转录对卵母细胞蛋白质组定量的影响,对添加或不添加转录抑制剂放线菌素D(ActD)成熟的生发泡卵母细胞和MII卵母细胞进行了全面的纳米液相色谱-串联质谱分析。对三组中的每组进行八个生物学重复分析,共鉴定出2018种蛋白质。这些蛋白质可根据卵母细胞成熟过程中是否依赖转录明确分类。无论转录抑制与否,成熟后丰度增加的蛋白质(即与转录无关)与细胞周期相关,反映减数分裂进程,还与细胞成分组织相关,这对细胞质成熟至关重要。相比之下,依赖转录的蛋白质与细胞间黏附和翻译相关。由于已证明卵母细胞中高蛋白质合成率与其发育能力相关,转录受损的COCs中的卵母细胞成熟显然受到干扰。我们的实验表明,COCs体外成熟过程中转录受损对卵母细胞蛋白质组的特定成分有重大影响,并且转录是主要参与翻译的特定类别卵母细胞蛋白质所必需的。

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