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Conserved roles for Oct4 homologues in maintaining multipotency during early vertebrate development.

机译:Oct4同源物在早期脊椎动物发育过程中保持多能性的保守作用。

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All vertebrate embryos have multipotent cells until gastrulation but, to date, derivation of embryonic stem (ES) cell lines has been achieved only for mouse and primates. ES cells are derived from mammalian inner cell mass (ICM) tissue that express the Class V POU domain (PouV) protein Oct4. Loss of Oct4 in mice results in a failure to maintain ICM and consequently an inability to derive ES cells. Here, we show that Oct4 homologues also function in early amphibian development where they act as suppressors of commitment during germ layer specification. Antisense morpholino mediated PouV knockdown in Xenopus embryos resulted in severe posterior truncations and anterior neural defects. Gastrulation stage embryos showed reduced expression of genes associated with uncommitted marginal zone cells, while the expression of markers associated with more mature cell states was expanded. Importantly, we have tested PouV proteins from a number of vertebrate species for the ability to substitute Oct4 in mouse ES cells. PouV domain proteins from both Xenopus and axolotl could support murine ES cell self-renewal but the only identified zebrafish protein in this family could not. Moreover, we found that PouV proteins regulated similar genes in ES cells and Xenopus embryos, and that PouV proteins capable of supporting ES cell self-renewal could also rescue the Xenopus PouV knockdown phenotype. We conclude that the unique ability of Oct4 to maintain ES cell pluripotency is derived from an ancestral function of this class of proteins to maintain multipotency.
机译:所有脊椎动物胚胎直到胃形成器官之前都具有多能细胞,但是迄今为止,仅针对小鼠和灵长类动物才实现了胚胎干(ES)细胞系的衍生。 ES细胞源自哺乳动物内部细胞团(ICM)组织,该组织表达V类POU域(PouV)蛋白Oct4。小鼠中Oct4的丢失导致无法维持ICM,因此无法获得ES细胞。在这里,我们显示Oct4同源物在两栖动物早期发育中也起作用,它们在胚层规格期间充当承诺的抑制因子。在非洲爪蟾胚胎中反义吗啉代介导的PouV敲低导致严重的后截断和前神经缺陷。胎龄期胚胎显示与未承诺的边缘区细胞相关的基因表达减少,而与更成熟的细胞状态相关的标志物的表达则扩大了。重要的是,我们已经测试了许多脊椎动物物种的PouV蛋白在小鼠ES细胞中替代Oct4的能力。来自非洲爪蟾和x的PouV结构域蛋白可以支持鼠ES细胞自我更新,但该家族中唯一鉴定出的斑马鱼蛋白不能。此外,我们发现PouV蛋白调节ES细胞和非洲爪蟾胚胎中的相似基因,并且能够支持ES细胞自我更新的PouV蛋白也可以拯救非洲爪蟾PouV敲低表型。我们得出结论,Oct4维持ES细胞多能性的独特能力源于此类蛋白质的祖先功能,以维持多能性。

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