首页> 外文期刊>International journal of biological sciences >Anterior Visceral Endoderm SMAD4 Signaling Specifies Anterior Embryonic Patterning and Head Induction in Mice
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Anterior Visceral Endoderm SMAD4 Signaling Specifies Anterior Embryonic Patterning and Head Induction in Mice

机译:前内脏内胚层SMAD4信号传导指定小鼠的前胚模式和头部诱导

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SMAD4 serves as a common mediator for signaling of TGF-β superfamily. Previous studies illustrated that SMAD4-null mice die at embryonic day 6.5 (E6.5) due to failure of mesoderm induction and extraembryonic defects; however, functions of SMAD4 in each germ layer remain elusive. To investigate this, we disrupted SMAD4 in the visceral endoderm and epiblast, respectively, using a Cre-loxP mediated approach. We showed that mutant embryos lack of SMAD4 in the visceral endoderm (Smad4Co/Co;TTR-Cre) died at E7.5-E9.5 without head-fold and anterior embryonic structures. We demonstrated that TGF-β regulates expression of several genes, such as Hex1, Cer1, and Lim1, in the anterior visceral endoderm (AVE), and the failure of anterior embryonic development in Smad4Co/Co;TTR-Cre embryos is accompanied by diminished expression of these genes. Consistent with this finding, SMAD4-deficient embryoid bodies showed impaired responsiveness to TGF-β-induced gene expression and morphological changes. On the other hand, embryos carrying Cre-loxP mediated disruption of SMAD4 in the epiblasts exhibited relatively normal mesoderm and head-fold induction although they all displayed profound patterning defects in the later stages of gastrulation. Cumulatively, our data indicate that SMAD4 signaling in the epiblasts is dispensable for mesoderm induction although it remains critical for head patterning, which is significantly different from SMAD4 signaling in the AVE, where it specifies anterior embryonic patterning and head induction.
机译:SMAD4充当TGF-β超家族信号转导的常见介体。先前的研究表明,由于中胚层诱导失败和胚外缺陷,SMAD4-null小鼠在胚胎第6.5天(E6.5)死亡。但是,SMAD4在每个细菌层中的功能仍然难以捉摸。为了对此进行研究,我们使用Cre-loxP介导的方法分别破坏了内脏内胚层和上皮细胞中的SMAD4。我们显示内脏内胚层(Smad4Co / Co; TTR-Cre)中缺少SMAD4的突变胚在E7.5-E9.5处死亡,没有头褶和前胚结构。我们证明了TGF-β调节内脏内胚层(AVE)中多个基因的表达,例如Hex1,Cer1和Lim1,并且Smad4Co / Co中的前胚发育失败; TTR-Cre胚伴随着减少这些基因的表达。与此发现一致的是,SMAD4缺乏的类胚体显示出对TGF-β诱导的基因表达和形态变化的反应能力受损。另一方面,携带Cre-loxP介导的SMAD4破坏的胚在成胚细胞中表现出相对正常的中胚层和头褶诱导,尽管它们在胃胚形成的后期均表现出深刻的模式缺陷。累积地,我们的数据表明,成骨细胞中的SMAD4信号传导对于中胚层诱导是可有可无的,尽管它对于头部模式仍然至关重要,这与AVE中的SMAD4信号传导显着不同,在AVE中,SMAD4信号机制指定了前胚胎模式和头部诱导。

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