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Regulation of extra-embryonic endoderm stem cell differentiation by Nodal and Cripto signaling.

机译:Nodal和Cripto信号传导调控胚外内胚层干细胞分化。

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The signaling pathway for Nodal, a ligand of the TGFbeta superfamily, plays a central role in regulating the differentiation and/or maintenance of stem cell types that can be derived from the peri-implantation mouse embryo. Extra-embryonic endoderm stem (XEN) cells resemble the primitive endoderm of the blastocyst, which normally gives rise to the parietal and the visceral endoderm in vivo, but XEN cells do not contribute efficiently to the visceral endoderm in chimeric embryos. We have found that XEN cells treated with Nodal or Cripto (Tdgf1), an EGF-CFC co-receptor for Nodal, display upregulation of markers for visceral endoderm as well as anterior visceral endoderm (AVE), and can contribute to visceral endoderm and AVE in chimeric embryos. In culture, XEN cells do not express Cripto, but do express the related EGF-CFC co-receptor Cryptic (Cfc1), and require Cryptic for Nodal signaling. Notably, the response to Nodal is inhibited by the Alk4/Alk5/Alk7 inhibitor SB431542, but the response to Cripto is unaffected, suggesting that the activity of Cripto is at least partially independent of type I receptor kinase activity. Gene set enrichment analysis of genome-wide expression signatures generated from XEN cells under these treatment conditions confirmed the differing responses of Nodal- and Cripto-treated XEN cells to SB431542. Our findings define distinct pathways for Nodal and Cripto in the differentiation of visceral endoderm and AVE from XEN cells and provide new insights into the specification of these cell types in vivo.
机译:Nodal是TGFbeta超家族的配体,其信号传导途径在调节可源自植入前后小鼠胚胎的干细胞类型的分化和/或维持中起着核心作用。胚外内胚层干(XEN)细胞类似于胚泡的原始内胚层,在体内通常会产生顶叶和内脏内胚层,但是XEN细胞不能有效地参与嵌合胚胎中的内脏内胚层。我们已经发现,用Nodal或Cripto(Tdgf1)(一种Nodal的EGF-CFC共同受体)处理的XEN细胞显示出内脏内胚层以及前内脏内胚层(AVE)的标志物上调,并且可以促进内脏内胚层和AVE在嵌合胚胎中。在培养中,XEN细胞不表达Cripto,但表达相关的EGF-CFC共同受体Cryptic(Cfc1),并且需要Cryptic进行Nodal信号传导。值得注意的是,对Nodal的反应被Alk4 / Alk5 / Alk7抑制剂SB431542抑制,但对Cripto的反应却不受影响,这表明Cripto的活性至少部分独立于I型受体激酶活性。在这些处理条件下,由XEN细胞产生的全基因组表达签名的基因集富集分析证实了经Nodal和Cripto处理的XEN细胞对SB431542的不同反应。我们的发现为从XEN细胞分化为内脏内胚层和AVE的Nodal和Cripto定义了不同的途径,并为体内这些细胞类型的规范提供了新见识。

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