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A molecular signature for purified definitive endoderm guides differentiation and isolation of endoderm from mouse and human embryonic stem cells

机译:纯化的定形内胚层的分子标记可指导小鼠和人类胚胎干细胞的内胚层分化和分离

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Embryonic definitive endoderm (DE) generates the epithelial compartment of vital organs such as liver, pancreas, and intestine. However, purification of DE in mammals has not been achieved, limiting the molecular "definition" of endoderm, and hindering our understanding of DE development and attempts to produce endoderm from sources such as embryonic stem (ES) cells. Here, we describe purification of mouse DE using fluorescence-activated cell sorting (FACS) and mice harboring a transgene encoding enhanced green fluorescent protein (eGFP) inserted into the Sox17 locus, which is expressed in the embryonic endoderm. Comparison of patterns of signaling pathway activation in native mouse DE and endoderm-like cells generated from ES cells produced novel culture modifications that generated Sox17-eGFP + progeny whose gene expression resembled DE more closely than achieved with standard methods. These studies also produced new FACS methods for purifying DE from nontransgenic mice and mouse ES cell cultures. Parallel studies of a new human SOX17-eGFP ES cell line allowed analysis of endoderm differentiation in vitro, leading to culture modifications that enhanced expression of an endoderm-like signature. This work should accelerate our understanding of mechanisms regulating DE development in mice and humans, and guide further use of ES cells for tissue replacement.
机译:胚胎定形内胚层(DE)生成重要器官(如肝脏,胰腺和肠道)的上皮区室。但是,尚未实现哺乳动物中DE的纯化,限制了内胚层的分子“定义”,并阻碍了我们对DE的理解,也阻碍了从诸如胚胎干(ES)细胞等来源生产内胚层的尝试。在这里,我们描述了使用荧光激活细胞分选术(FACS)纯化小鼠DE的方法,以及携带编码增强型绿色荧光蛋白(eGFP)的转基因的小鼠插入到Sox17基因座中的功能,该基因在胚胎内胚层中表达。比较天然小鼠DE和从ES细胞产生的内胚层样细胞中信号传导途径的激活方式,可以产生新的培养物修饰,从而产生Sox17-eGFP +后代,其后代的基因表达与DE的相似度比标准方法更接近。这些研究还产生了新的FACS方法,用于从非转基因小鼠和小鼠ES细胞培养物中纯化DE。对新的人类SOX17-eGFP ES细胞系的平行研究允许体外分析内胚层分化,从而导致培养修饰,从而增强内胚层样标记的表达。这项工作应加深我们对调节小鼠和人类DE发育的机制的了解,并指导进一步使用ES细胞进行组织置换。

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