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On Mammalian Totipotency: What Is the Molecular Underpinning for the Totipotency of Zygote?

机译:在哺乳动物彻特语:Zygote的全能性是什么?

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摘要

The mammalian zygote is described as a totipotent cell in the literature, but this characterization is elusive ignoring the molecular underpinnings. Totipotency can connote genetic totipotency, epigenetic totipotency, or the repro-gramming capacity of a cell to epigenetic totipotency. Here, the implications of these concepts are discussed in the context of the properties of the zygote. Although genetically totipotent as any diploid somatic cell is, a zygote seems not totipotent transcriptionally, epigenetically, or functionally. Yet, a zygote may retain most of the key factors from its parental oocyte to reprogram an implanted differentiated genome or the zygote genome toward totipotency. This totipotent reprogramming process may extend to blastomeres in the two-cell-stage embryo. Thus, a revised alternative model of mammalian cellular totipotency is proposed, in which an epigenetically totipotent cell exists after the major embryonic genome activation and before the separation of the first two embryonic lineages.
机译:哺乳动物的哺乳动物Zygotote被描述为文献中的全能细胞,但这种表征是难以忽略分子底层的。 Totipootency可以陈述遗传彻特语,表观遗传学,或细胞的重复记录能力。在这里,在Zygote的属性的背景下讨论这些概念的含义。虽然基因直接传递作为任何二倍体体细胞是,但是,一种术语似乎不具有转录,表述或功能性的。然而,一个Zygote可以保留来自其亲本卵母细胞的大部分关键因素,以重新编程植入的分化基因组或对Totipotency的植入区分基因组。这种全能的重编程过程可以延伸到双细胞阶段胚胎中的卵囊。因此,提出了一种修正的哺乳动物细胞闭合表的替代模型,其中在主要胚胎基因组激活之后存在表述全能的细胞,并且在分离前两种胚胎谱系之前。

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