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Failure of extra-embryonic progenitor maintenance in the absence of dosage compensation

机译:没有剂量补偿的胚胎外祖细胞维持失败

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摘要

Proper regulation of X-linked gene expression, termed dosage compensation, is required for the normal development of mammalian embryos. Through the process of X chromosome inactivation (XCI), somatic cells of mammalian females inactivate one of their two X chromosomes in order to balance X-linked gene dosage with their male counterparts. The process of XCI is dependent upon the long non-coding RNA Xist, which is expressed from and coats the inactivated X chromosome (Xi) in cis. During mouse embryogenesis, imprinted XCI inactivates the paternally inherited X chromosome (Xp) within the extra-embryonic lineages. Consequently, females harboring a paternally derived Xist mutation (X/XXist–) die owing to failure of imprinted XCI and, presumably, poor trophoblast development. Here, we investigate the consequence of two active X chromosomes in the extra-embryonic ectoderm (ExE) of X/XXist– female embryos. At embryonic day (E) 6.5, we find that the X/XXist– ExE lacks the transcriptional regulator CDX2, a factor required to maintain the ExE in a progenitor state. In addition, spongiotrophoblast progenitors are not maintained. Surprisingly, we observe evidence of an Xi in a subpopulation of X/XXist– ExE cells. We demonstrate further that trophectodermal stem cells derived from X/XXist– embryos completely reverse normal imprinted XCI patterns. Taken together, our data suggest that, much like in the cells of the epiblast, the initial imprint that establishes imprinted XCI is probably erased in ExE cells. Conversely, unlike the epiblast, in which XCI is not required for progenitor cell maintenance, we demonstrate that dosage compensation is indispensable for the maintenance of trophoblast progenitors.
机译:X连锁基因表达的适当调节,称为剂量补偿,是哺乳动物胚胎正常发育所必需的。通过X染色体灭活(XCI)过程,哺乳动物雌性的体细胞将其两个X染色体之一灭活,以平衡X连锁基因剂量与雄性对应基因的剂量。 XCI的过程取决于长的非编码RNA Xist,它是从灭活的X染色体(Xi)顺式表达并覆盖它。在小鼠胚胎发生过程中,印迹的XCI使胚外谱系内的父系遗传X染色体(Xp)失活。因此,具有父源性Xist突变(X / X Xist – )的雌性会由于印迹的XCI失败以及滋养层发育不良而死亡。在这里,我们研究X / X Xist – 雌性胚胎的胚外外胚层(ExE)中两个活动X染色体的结果。在胚胎第6.5天,我们发现X / X Xist – ExE缺少转录调节因子CDX2,这是将ExE维持在祖细胞状态所需的因子。另外,不维持海绵滋养细胞祖细胞。令人惊讶的是,我们观察到X / X Xist – ExE细胞亚群中有Xi的证据。我们进一步证明,源自X / X Xist – 胚胎的滋养皮干细胞完全逆转了正常的印迹XCI模式。综上所述,我们的数据表明,与上皮细胞一样,建立印迹XCI的初始印迹可能会在ExE细胞中消失。相反,不同于上皮细胞,其中不需要XCI来维持祖细胞,我们证明了剂量补偿对于滋养细胞祖细胞的维持是必不可少的。

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