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The first cell-fate decision of mouse preimplantation embryo development: integrating cell position and polarity

机译:小鼠植入前胚胎发育的第一个细胞命运决定:整合细胞位置和极性

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摘要

During the first cell-fate decision of mouse preimplantation embryo development, a population of outer-residing polar cells is segregated from a second population of inner apolar cells to form two distinct cell lineages: the trophectoderm and the inner cell mass (ICM), respectively. Historically, two models have been proposed to explain how the initial differences between these two cell populations originate and ultimately define them as the two stated early blastocyst stage cell lineages. The ‘positional’ model proposes that cells acquire distinct fates based on differences in their relative position within the developing embryo, while the ‘polarity’ model proposes that the differences driving the lineage segregation arise as a consequence of the differential inheritance of factors, which exhibit polarized subcellular localizations, upon asymmetric cell divisions. Although these two models have traditionally been considered separately, a growing body of evidence, collected over recent years, suggests the existence of a large degree of compatibility. Accordingly, the main aim of this review is to summarize the major historical and more contemporarily identified events that define the first cell-fate decision and to place them in the context of both the originally proposed positional and polarity models, thus highlighting their functional complementarity in describing distinct aspects of the developmental programme underpinning the first cell-fate decision in mouse embryogenesis.
机译:在小鼠胚胎植入前胚胎发育的第一个细胞命运决定过程中,一个外部居住的极性细胞群与另一个内部非极性细胞群分离,形成了两个不同的细胞谱系:滋养外胚层和内部细胞团(ICM) 。历史上,已经提出了两个模型来解释这两个细胞群之间的初始差异是如何产生的,并最终将它们定义为两个所述的胚泡早期细胞谱系。 “位置”模型建议细胞根据其在发育中的胚胎中相对位置的差异获得不同的命运,而“极性”模型建议细胞驱动谱系分离的差异是由于因子的差异遗传而产生的。在不对称细胞分裂后极化的亚细胞定位。尽管传统上通常将这两种模型分开考虑,但近年来收集的越来越多的证据表明存在很大程度的兼容性。因此,本综述的主要目的是总结主要的历史事件和更现代的事件,这些事件定义了第一个细胞命运决定,并将其置于最初提出的位置模型和极性模型的背景下,从而突出了它们在功能上的互补性。描述了在小鼠胚胎发生中第一个细胞命运决定的基础的发育程序的不同方面。

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