Department of Animal Science, Graduate School of Agriculture, Tokyo University of Agriculture, Funako 1737, Atsugi 243-0034, Kanagawa, Japan.
Int J Mol Sci. 2024 May 28;25(11):5872. doi: 10.3390/ijms25115872.
Global methylation levels differ in in vitro- and in vivo-developed embryos. Follicular fluid (FF) contains extracellular vesicles (EVs) containing miRNAs that affect embryonic development. Here, we examined our hypothesis that components in FF affect global DNA methylation and embryonic development. Oocytes and FF were collected from bovine ovaries. Treatment of zygotes with a low concentration of FF induced global DNA demethylation, improved embryonic development, and reduced DNMT1/3A levels. We show that embryos take up EVs containing labeled miRNA secreted from granulosa cells and the treatment of zygotes with EVs derived from FF reduces global DNA methylation in embryos. Furthermore, the methylation levels of in vitro-developed blastocysts were higher than those of in their vivo counterparts. Based on small RNA-sequencing and in silico analysis, we predicted miR-29b, -199a-3p, and -148a to target DNMTs and to induce DNA demethylation, thereby improving embryonic development. Moreover, among FF from 30 cows, FF with a high content of these miRNAs demethylated more DNA in the embryos than FF with a lower miRNA content. Thus, miRNAs in FF play a role in early embryonic development.
体外和体内培养的胚胎的全球甲基化水平存在差异。卵泡液(FF)中含有影响胚胎发育的 miRNA 外泌体(EVs)。在此,我们检验了这样一个假设,即 FF 中的成分会影响胚胎的整体 DNA 甲基化和胚胎发育。我们从牛卵巢中收集卵母细胞和 FF。用低浓度的 FF 处理受精卵会诱导整体 DNA 去甲基化,提高胚胎发育能力,并降低 DNMT1/3A 水平。我们发现胚胎摄取了由颗粒细胞分泌的含标记 miRNA 的 EVs,用 FF 衍生的 EVs 处理受精卵会降低胚胎的整体 DNA 甲基化水平。此外,体外培养的囊胚的甲基化水平高于体内培养的囊胚。通过小 RNA 测序和计算机分析,我们预测 miR-29b、-199a-3p 和 -148a 可以靶向 DNMT 并诱导 DNA 去甲基化,从而改善胚胎发育。此外,在 30 头奶牛的 FF 中,含有这些 miRNA 的 FF 比 miRNA 含量较低的 FF 能使胚胎中更多的 DNA 去甲基化。因此,FF 中的 miRNA 在外胚层早期发育中起作用。