首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Follistatin antagonizes Activin signaling and acts with Notum to direct planarian head regeneration
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Follistatin antagonizes Activin signaling and acts with Notum to direct planarian head regeneration

机译:卵泡抑素拮抗激活素信号传导,并与Notum共同作用以引导涡虫头部再生

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Animals establish their body plans in embryogenesis, but only a few animals can recapitulate this signaling milieu for regeneration after injury. In planarians, a pluripotent stem cell population and perpetual signaling of polarity axes collaborate to direct a steady replacement of cells during homeostasis and to power robust regeneration after even severe injuries. Several studies have documented the roles of conserved signaling pathways in maintaining and resetting axial polarity in planarians, but it is unclear how planarians reestablish polarity signaling centers after injury and whether these centers serve to influence identity decisions of stem cell progeny during their differentiation. Here we find that a planarian Follistatin homolog directs regeneration of anterior identity by opposing an Activin/ActR-1/Smad2/3 signaling pathway. Follistatin and Notum, a Wnt inhibitor, are mutually required to reestablish an anterior signaling center that expresses both cues. Furthermore, we show that the direction of cells down particular differentiation paths requires regeneration of this anterior signaling center. Just as its amphibian counterpart in the organizer signals body plan and cell fate during embryogenesis, planarian Follistatin promotes reestablishment of anterior polarity during regeneration and influences specification of cell types in the head and beyond.
机译:动物在胚胎发生过程中建立了自己的身体计划,但是只有少数动物可以概括这种信号环境,以便在受伤后进行再生。在涡虫中,多能干细胞群和极性轴的永久信号共同作用,在稳态过程中指导细胞的稳定置换,甚至在严重伤害后也能促进强大的再生。数项研究已记录了保守的信号通路在维持和重置涡虫的轴向极性中的作用,但尚不清楚涡虫在受伤后如何重建极性信号中心,以及这些中心是否在分化过程中影响干细胞后代的身份决定。在这里,我们发现,一个涡虫卵泡抑素同源物通过对抗一个Activin / ActR-1 / Smad2 / 3信号通路来指导前身身份的再生。卵泡抑素和Wnt抑制剂Notum是重建表达两种信号的前信号传导中心的共同需要。此外,我们表明细胞沿着特定分化路径的方向需要该前信号中心的再生。正如其组织者中的两栖动物对应物在胚胎发生过程中发出身体计划和细胞命运的信号一样,涡虫卵泡抑素可以促进再生过程中前极性的重建,并影响头部及其他部位的细胞类型。

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