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The APC/C activator FZR1 coordinates the timing of meiotic resumption during prophase I arrest in mammalian oocytes.

机译:APC / C激活剂FZR1协调哺乳动物卵母细胞前期I逮捕期间减数分裂恢复的时间。

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FZR1, an activator of the anaphase-promoting complex/cyclosome (APC/C), is recognized for its roles in the mitotic cell cycle. To examine its meiotic function in females we generated an oocyte-specific knockout of the Fzr1 gene (Fzr1(Delta/Delta)). The total number of fully grown oocytes enclosed in cumulus complexes was 35-40% lower in oocytes from Fzr1(Delta/Delta) mice and there was a commensurate rise in denuded, meiotically advanced and/or fragmented oocytes. The ability of Fzr1(Delta/Delta) oocytes to remain prophase I/germinal vesicle (GV) arrested in vitro was also compromised, despite the addition of the phosphodiesterase milrinone. Meiotic competency of smaller diameter oocytes was also accelerated by Fzr1 loss. Cyclin B1 levels were elevated ~5-fold in Fzr1(Delta/Delta) oocytes, whereas securin and CDC25B, two other APC/C(FZR1) substrates, were unchanged. Cyclin B1 overexpression can mimic the effects of Fzr1 loss on GV arrest and here we show that cyclin B1 knockdown in Fzr1(Delta/Delta) oocytes affects the timing of meiotic resumption. Therefore, the effects of Fzr1 loss are mediated, at least in part, by raised cyclin B1. Thus, APC/C(FZR1) activity is required to repress cyclin B1 levels in oocytes during prophase I arrest in the ovary, thereby maintaining meiotic quiescence until hormonal cues trigger resumption.
机译:FZR1是后期促进复合物/环体(APC / C)的激活剂,因其在有丝分裂细胞周期中的作用而被公认。为了检查其在女性中的减数分裂功能,我们生成了Fzr1基因(Fzr1(Delta / Delta))的卵母细胞特异性敲除。在Fzr1(Delta / Delta)小鼠的卵母细胞中,被卵丘复合体包裹的完全生长的卵母细胞总数减少了35-40%,并且剥蚀的,减数分裂的和/或破碎的卵母细胞也有相应的增加。尽管添加了磷酸二酯酶米力农,但Fzr1(Delta / Delta)卵母细胞保持体外捕获的前期I /生殖小泡(GV)的能力也受到损害。 Fzr1丢失也促进了直径较小的卵母细胞的减数分裂能力。在Fzr1(Delta / Delta)卵母细胞中,细胞周期蛋白B1的水平升高了约5倍,而其他两种APC / C(FZR1)底物的安全蛋白和CDC25B则没有变化。细胞周期蛋白B1的过表达可以模拟Fzr1丢失对GV阻滞的影响,在这里我们表明Fzr1(Delta / Delta)卵母细胞中细胞周期蛋白B1的敲低会影响减数分裂恢复的时间。因此,Fzr1丢失的影响至少部分地由细胞周期蛋白B1升高介导。因此,在卵巢的前期I期停滞期间,需要APC / C(FZR1)活性来抑制卵母细胞中细胞周期蛋白B1的水平,从而保持减数分裂静止直到激素提示触发恢复。

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