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首页> 外文期刊>Developmental biology >BMP4 signaling directs primitive endoderm-derived XEN cells to an extraembryonic visceral endoderm identity
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BMP4 signaling directs primitive endoderm-derived XEN cells to an extraembryonic visceral endoderm identity

机译:BMP4信号引导原始内胚层来源的XEN细胞进入胚外内脏内胚层身份

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摘要

The visceral endoderm (VE) is an epithelial tissue in the early postimplantation mouse embryo that encapsulates the pluripotent epiblast distally and the extraembryonic ectoderm proximally. In addition to facilitating nutrient exchange before the establishment of a circulation, the VE is critical for patterning the epiblast. Since VE is derived from the primitive endoderm (PrE) of the blastocyst, and PrE-derived eXtraembryonic ENdoderm (XEN) cells can be propagated in vitro, XEN cells should provide an important tool for identifying factors that direct VE differentiation. In this study, we demonstrated that BMP4 signaling induces the formation of a polarized epithelium in XEN cells. This morphological transition was reversible, and was associated with the acquisition of a molecular signature comparable to extraembryonic (ex) VE. Resembling exVE which will form the endoderm of the visceral yolk sac, BMP4-treated XEN cells regulated hematopoiesis by stimulating the expansion of primitive erythroid progenitors. We also observed that LIF exerted an antagonistic effect on BMP4-induced XEN cell differentiation, thereby impacting the extrinsic conditions used for the isolation and maintenance of XEN cells in an undifferentiated state. Taken together, our data suggest that XEN cells can be differentiated towards an exVE identity upon BMP4 stimulation and therefore represent a valuable tool for investigating PrE lineage differentiation.
机译:内脏内胚层(VE)是植入后早期小鼠胚胎中的上皮组织,其远端包裹多能上皮细胞,近端包裹胚外外胚层。除了在循环建立之前促进营养交换外,VE对于图案化上皮细胞至关重要。由于VE源自胚泡的原始内胚层(PrE),并且PrE衍生的胚内胚层(XEN)细胞可以在体外繁殖,因此XEN细胞应提供重要的工具来鉴定指导VE分化的因素。在这项研究中,我们证明了BMP4信号传导会在XEN细胞中诱导极化上皮细胞的形成。这种形态学转变是可逆的,并且与获得与胚外(ex)VE相当的分子标记有关。与将形成内脏卵黄囊内胚层的exVE类似,经BMP4处理的XEN细胞通过刺激原始红系祖细胞的扩增来调节造血作用。我们还观察到LIF对BMP4诱导的XEN细胞分化产生了拮抗作用,从而影响了用于未分化状态XEN细胞的分离和维持的外在条件。综上所述,我们的数据表明XEN细胞可以在BMP4刺激下朝exVE身份分化,因此代表了研究PrE谱系分化的有价值的工具。

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