Department of Cell and Developmental Biology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2012 Sep 18;109(38):15348-53. doi: 10.1073/pnas.1201583109. Epub 2012 Sep 4.
Endoderm-mesenchyme cross-talk is a central process in the development of foregut-derived organs. How signaling pathways integrate the activity of multiple ligands to guide organ development is poorly understood. We show that two Wnt ligands, Wnt2 and Wnt7b, cooperatively induce Wnt signaling without affecting the stabilization of the Wnt canonical effector β-catenin despite it being necessary for Wnt2-Wnt7b cooperativity. Wnt2-Wnt7b cooperation is specific for mesenchymal cell lineages and the combined loss of Wnt2 and Wnt7b leads to more severe developmental defects in the lung than loss of Wnt2 or Wnt7b alone. High-throughput small-molecule screens and biochemical assays reveal that the Pdgf pathway is required for cooperative Wnt2-Wnt7b signaling. Inhibition of Pdgf signaling in cell culture reduces Wnt2-Wnt7b cooperative signaling. Moreover, inhibition of Pdgf signaling in lung explant cultures results in decreased Wnt signaling and lung smooth-muscle development. These data suggest a model in which Pdgf signaling potentiates Wnt2-Wnt7b signaling to promote high levels of Wnt activity in mesenchymal progenitors that is required for proper development of endoderm-derived organs, such as the lung.
内胚层-中胚层相互作用是前肠衍生器官发育的核心过程。信号通路如何整合多种配体的活性来指导器官发育还知之甚少。我们表明,两种 Wnt 配体 Wnt2 和 Wnt7b 协同诱导 Wnt 信号,而不影响 Wnt 经典效应物 β-连环蛋白的稳定,尽管它是 Wnt2-Wnt7b 协同作用所必需的。Wnt2-Wnt7b 合作是针对中胚层细胞谱系的,并且 Wnt2 和 Wnt7b 的联合缺失导致肺的发育缺陷比单独缺失 Wnt2 或 Wnt7b 更严重。高通量小分子筛选和生化分析表明,Pdgf 途径是协同 Wnt2-Wnt7b 信号所必需的。在细胞培养中抑制 Pdgf 信号会降低 Wnt2-Wnt7b 协同信号。此外,在肺外植体培养中抑制 Pdgf 信号会导致 Wnt 信号减少和肺平滑肌发育不良。这些数据表明了一个模型,即 Pdgf 信号增强了 Wnt2-Wnt7b 信号,以促进中胚层祖细胞中高水平的 Wnt 活性,这对于前肠衍生器官(如肺)的正常发育是必需的。