Effects of activin A on the transcriptome of mouse oogenesis in vitro

From the previous research, it has been supported that activin A (ActA) is conducive to ovarian development in vitro. In the present paper, with the aim to identify the molecular pathways through which ActA can influence processes of the fetal and early postnatal oogenesis, we analyzed the transcrip...

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Veröffentlicht in:Journal of cellular physiology 2019-08, Vol.234 (8), p.14339-14350
Hauptverfasser: Wang, Jun‐Jie, Zhai, Qiu‐Yue, Zhang, Rui‐Qian, Ge, Wei, Liu, Jing‐Cai, Li, Lan, Sun, Zhong‐Yi, Felici, Massimo, Shen, Wei
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Sprache:eng
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Zusammenfassung:From the previous research, it has been supported that activin A (ActA) is conducive to ovarian development in vitro. In the present paper, with the aim to identify the molecular pathways through which ActA can influence processes of the fetal and early postnatal oogenesis, we analyzed the transcriptome of embryonic ovaries (12.5 days postcoitum) in vitro cultured with or without ActA for 6 days, as well as the produced oocytes for 28 days, and further compared the gene expression profile with their in vivo counterparts. With the confirmation of designed test, we found that the addition of ActA to the ovary culture tended, generally, to align oocyte gene expression to the in vivo condition, in particular of a number of genes involved in meiosis and epigenetic modifications of histones. In particular, we identified DNA recombination during the oocyte meiotic prophase I and lysine trimethylation of the histone H3K27 during the oocyte growth phase as molecular pathways modulated by ActA. In the present paper, we found that the addition of activin A to the ovary culture tended, generally, to align oocyte gene expression to the in vivo condition, in particular of a number of genes involved in meiosis and epigenetic modifications of histones.
ISSN:0021-9541
1097-4652
DOI:10.1002/jcp.28135