Department of Biological Production, Tokyo University of Agriculture and Technology, Tokyo, 183-8509, Japan.
Laboratory of Animal Reproduction and Development, Graduate School of Agricultural Science, Tohoku University, Miyagi, 981-8555, Japan.
Sci Rep. 2017 Jul 28;7(1):6815. doi: 10.1038/s41598-017-07039-5.
During antral folliculogenesis, developmental competence of prospective oocytes is regulated in large part by the follicular somatic component to prepare the oocyte for the final stage of maturation and subsequent embryo development. The underlying molecular mechanisms are poorly understood. Oocytes reaching the advanced stage of follicular growth by administration of exogenous follicle-stimulating hormone (FSH) possess higher developmental competence than oocytes in FSH-untreated smaller follicles. In this study, the transcriptomic profile of the cumulus cells from cows receiving FSH administration (FSH-priming) was compared, as a model of high oocyte competence, with that from untreated donor cows (control). Ingenuity Pathway Analysis showed that cumulus cells receiving FSH-priming were rich in down-regulated transcripts associated with cell movement and migration, including the extracellular matrix-related transcripts, probably preventing the disruption of cell-to-cell contacts. Interestingly, the transcriptomic profile of up-regulated genes in the control group was similar to that of granulosa cells from atretic follicles. Interferon regulatory factor 7 was activated as the key upstream regulator of FSH-priming. Thus, acquisition of developmental competence by oocytes can be ensured by the integrity of cumulus cells involved in cell-to-cell communication and cell survival, which may help achieve enhanced oocyte-somatic cell coupling.
在窦前卵泡发生过程中,卵母细胞的发育能力在很大程度上受卵泡体细胞成分的调节,以准备卵母细胞进入成熟的最后阶段和随后的胚胎发育。潜在的分子机制还了解甚少。通过外源性促卵泡激素 (FSH) 给药达到卵泡生长晚期的卵母细胞比未经 FSH 处理的较小卵泡中的卵母细胞具有更高的发育能力。在这项研究中,比较了接受 FSH 预处理(FSH 预刺激)的奶牛的卵丘细胞的转录组图谱,作为高卵母细胞能力的模型,与未经处理的供体奶牛(对照)的转录组图谱进行比较。Ingenuity 通路分析显示,接受 FSH 预刺激的卵丘细胞富含与细胞运动和迁移相关的下调转录本,包括细胞外基质相关转录本,可能防止细胞间接触的破坏。有趣的是,对照组上调基因的转录组图谱与退化卵泡中的颗粒细胞相似。干扰素调节因子 7 被激活为 FSH 预刺激的关键上游调节因子。因此,卵母细胞获得发育能力可以通过参与细胞间通讯和细胞存活的卵丘细胞的完整性来保证,这可能有助于实现增强的卵母细胞-体细胞偶联。