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首页> 外文期刊>Journal of cell biology >Tex19.1 inhibits the N-end rule pathway and maintains acetylated SMC3 cohesin and sister chromatid cohesion in oocytes
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Tex19.1 inhibits the N-end rule pathway and maintains acetylated SMC3 cohesin and sister chromatid cohesion in oocytes

机译:TEX19.1抑制N末端规则途径,并将乙酰化SMC3幼耳和卵母细胞中的姐妹染色体内粘性维持

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Age-dependent oocyte aneuploidy, a major cause of Down syndrome, is associated with declining sister chromatid cohesion in postnatal oocytes. Here we show that cohesion in postnatal mouse oocytes is regulated by Tex19.1. We show Tex19.1?/? oocytes have defects maintaining chiasmata, missegregate their chromosomes during meiosis, and transmit aneuploidies to the next generation. Furthermore, we show that mouse Tex19.1 inhibits N-end rule protein degradation mediated by its interacting partner UBR2, and that Ubr2 itself has a previously undescribed role in negatively regulating the acetylated SMC3 subpopulation of cohesin in mitotic somatic cells. Lastly, we show that acetylated SMC3 is associated with meiotic chromosome axes in mouse oocytes, and that this population of cohesin is specifically depleted in the absence of Tex19.1. These findings indicate that Tex19.1 regulates UBR protein activity to maintain acetylated SMC3 and sister chromatid cohesion in postnatal oocytes and prevent aneuploidy from arising in the female germline.
机译:年龄依赖性的卵母细胞非血细胞非血症患者唐氏综合征的主要原因与产后卵母细胞中的姐妹染色体内聚力下降有关。在这里,我们表明产后小鼠卵母细胞的内聚力由TEX19.1调节。我们展示了tex19.1吗?/?卵母细胞缺陷维持Chiasmata,在减数分裂中误导其染色体,并将非含量传递给下一代。此外,我们表明小鼠Tex19.1抑制由其相互作用的伴侣UBR2介导的N末端规则蛋白质降解,并且uBR2本身在对丝状体细胞中的乙酰化SMC3亚泊亚乙酰化的SMC3亚泊亚替代中具有先前未描述的作用。最后,我们表明乙酰化SMC3与小鼠卵母细胞中的减数分裂染色体轴相关,并且在没有Tex19.1的情况下,该幼虫的群体被特异性耗尽。这些发现表明,TEX19.1调节UBR蛋白活性,以将乙酰化SMC3和乳腺染色体在后期卵母细胞中维持,并预防雌性种系中的非整倍性。

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