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Independent functions and mechanisms for homeobox gene Barx1 in patterning mouse stomach and spleen

机译:同源盒基因Barx1在小鼠脾脏和胃中的独立功能和机制

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摘要

Homeobox genes convey positional information in embryos and their role in patterning the mammalian gut is a topic of considerable interest. Barx1 is expressed selectively in fetal stomach mesenchyme and directs differentiation of overlying endoderm. Recombinant tissue cultures and study of young mouse embryos previously suggested that Barx1 controls expression of secreted Wnt antagonists, which suppress endodermal Wnt signaling, to enable stomach epithelial differentiation. We overcame mid- gestational lethality of Barx1(-/ -) mouse embryos and report here the spectrum of anomalies in a distinctive and unprecedented model of gastrointestinal homeotic transformation. Using various mouse models, we confirm the importance of attenuated Wnt signaling in stomach development and the role of Barx1 in suppressing endodermal Wnt activity. Absence of Barx1 also results in fully penetrant defects in positioning and expansion of the spleen, an organ that originates within the mesothelial lining of the stomach. Barx1 is absent from the spleen primordium but highly expressed in the mesogastrium, indicating an indirect effect on spleen development. However, our results argue against a role for Wnt antagonism in genesis of the spleen. Mouse spleen development relies on several homeodomain transcriptional regulators that are expressed in the spleen primordium. Loss of Barx1 does not affect expression of any of these genes but notably reduces expression of Wt1, a transcription factor implicated in spleen morphogenesis and expressed in the mesothelium. These observations place Barx1 proximally within a Wt1 pathway of spleen development and reveal how a homeotic regulator employs different molecular mechanisms to mold neighboring organs
机译:同源异型盒基因在胚胎中传递位置信息,它们在哺乳动物肠道构图中的作用是一个令人关注的话题。 Barx1在胎儿胃间充质中选择性表达,并指导上皮内胚层的分化。重组组织培养和对年轻小鼠胚胎的研究以前表明,Barx1控制分泌的Wnt拮抗剂的表达,从而抑制胃内Wnt信号传导,从而使胃上皮分化。我们克服了Barx1(-/-)小鼠胚胎的孕中期致死率,并在此报告了胃肠道同源性转化的独特且前所未有的模型中的异常谱。使用各种小鼠模型,我们证实了减毒Wnt信号在胃发育中的重要性以及Barx1在抑制内胚层Wnt活性中的作用。缺乏Barx1还会导致脾脏的定位和扩张完全渗透,而脾脏是起源于胃间皮内膜的器官。脾原基中不存在Barx1,但在中肠胃中高表达,表明对脾脏发育有间接影响。但是,我们的研究结果反对Wnt拮抗作用在脾脏发生中的作用。小鼠脾脏发育依赖于在脾原基中表达的几种同源结构域转录调节因子。 Barx1的丢失不会影响任何这些基因的表达,但会显着降低Wt1的表达,Wt1是一种涉及脾形态发生并在间皮中表达的转录因子。这些观察结果将Barx1放置在脾脏Wt1通路的近端,并揭示了同源调节剂如何利用不同的分子机制来塑造邻近的器官

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