首页> 美国卫生研究院文献>Development (Cambridge England) >Suppression of Bmp4 signaling by the zinc-finger repressors Osr1 and Osr2 is required for Wnt/β-catenin-mediated lung specification in Xenopus
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Suppression of Bmp4 signaling by the zinc-finger repressors Osr1 and Osr2 is required for Wnt/β-catenin-mediated lung specification in Xenopus

机译:Wnt /β-catenin介导的爪蟾肺规格需要锌指阻遏物Osr1和Osr2抑制Bmp4信号传导。

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摘要

Embryonic development of the respiratory system is regulated by a series of mesenchymal-epithelial interactions that are only partially understood. Mesenchymal FGF and Wnt2/Wnt2b signaling are implicated in specification of mammalian pulmonary progenitors from the ventral foregut endoderm, but their epistatic relationship and downstream targets are largely unknown. In addition, how wnt2 and wnt2b are regulated in the developing foregut mesenchyme is unknown. We show that the Odd-skipped-related (Osr) zinc-finger transcriptional repressors Osr1 and Osr2 are redundantly required for Xenopus lung specification in a molecular pathway linking foregut pattering by FGFs to Wnt-mediated lung specification and RA-regulated lung bud growth. FGF and RA signals are required for robust osr1 and osr2 expression in the foregut endoderm and surrounding lateral plate mesoderm (lpm) prior to respiratory specification. Depletion of both Osr1 and Osr2 (Osr1/Osr2) results in agenesis of the lungs, trachea and esophagus. The foregut lpm of Osr1/Osr2-depleted embryos fails to express wnt2, wnt2b and raldh2, and consequently Nkx2.1+ progenitors are not specified. Our data suggest that Osr1/Osr2 normally repress bmp4 expression in the lpm, and that BMP signaling negatively regulates the wnt2b domain. These results significantly advance our understanding of early lung development and may impact strategies to differentiate respiratory tissue from stem cells.
机译:呼吸系统的胚胎发育受一系列仅部分了解的间充质-上皮相互作用的调节。间质FGF和Wnt2 / Wnt2b信号涉及腹前肠内胚层的哺乳动物肺祖细胞的规格,但它们的上位关系和下游靶标很大程度上未知。此外,如何在发育中的前肠间充质中调节wnt2和wnt2b。我们显示,非洲爪蟾的肺规格在连接由FGFs与Wnt介导的肺规格和RA调控的肺芽生长相关的分子途径中,对于非洲爪蟾的肺规格来说,冗余地需要与Oskr相关的(Osr)锌指转录阻遏物Osr1和Osr2。在呼吸规范之前,FGF和RA信号是在前肠内胚层和周围的侧板中胚层(lpm)中稳定表达osr1和osr2所必需的。 Osr1和Osr2(Osr1 / Osr2)的消耗都会导致肺,气管和食道的再生障碍。 Osr1 / Osr2耗尽胚胎的前肠lpm无法表达wnt2,wnt2b和raldh2,因此未指定Nkx2.1 + 祖细胞。我们的数据表明,Osr1 / Osr2正常抑制lpm中的bmp4表达,并且BMP信号负调控wnt2b结构域。这些结果大大提高了我们对早期肺部发育的了解,并可能影响区分呼吸系统和干细胞的策略。

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