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Germ cell-intrinsic effects of sex chromosomes on early oocyte differentiation in mice.

PLoS genetics (2020-03-28)
Norio Hamada, Nobuhiko Hamazaki, So Shimamoto, Orie Hikabe, Go Nagamatsu, Yuki Takada, Kiyoko Kato, Katsuhiko Hayashi
ABSTRAKT

A set of sex chromosomes is required for gametogenesis in both males and females, as represented by sex chromosome disorders causing agametic phenotypes. Although studies using model animals have investigated the functional requirement of sex chromosomes, involvement of these chromosomes in gametogenesis remains elusive. Here, we elicit a germ cell-intrinsic effect of sex chromosomes on oogenesis, using a novel culture system in which oocytes were induced from embryonic stem cells (ESCs) harboring XX, XO or XY. In the culture system, oogenesis using XO and XY ESCs was severely disturbed, with XY ESCs being more strongly affected. The culture system revealed multiple defects in the oogenesis of XO and XY ESCs, such as delayed meiotic entry and progression, and mispairing of the homologous chromosomes. Interestingly, Eif2s3y, a Y-linked gene that promotes proliferation of spermatogonia, had an inhibitory effect on oogenesis. This led us to the concept that male and female gametogenesis appear to be in mutual conflict at an early stage. This study provides a deeper understanding of oogenesis under a sex-reversal condition.

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Sigma-Aldrich
Przeciwciało anty-fosfo-histonowe H2A.X (Ser139), klon JBW301, koniugat FITC, clone JBW301, Upstate®, from mouse
Sigma-Aldrich
Przeciwciało przeciw trimetylo-histonowi H3 (Lys27), Upstate®, from rabbit
Sigma-Aldrich
Demecolcine solution, 10 μg/mL in HBSS, ACF Qualified, BioXtra
Sigma-Aldrich
Poly-L-lysine solution, 0.1 % (w/v) in H2O