AbstractOperational parallels in overall mechanisms of three-dimensional patterning of vertebrate organs are becoming increasingly apparent. Many key mediators, such as FGFs, BMPs, and sonic hedgehog, participate in organization of a number of organs, including the lungs, which exhibit a defined proximodistal (P-D) polarity. Recently, Wnt5a a member of the wingless family of signaling molecules involved in cell proliferation, differentiation, and organogenesis, was shown to underlie the outgrowth and P-D morphogenesis of the vertebrate limb. In the current study, we show that Wnt5a is expressed in the mouse lung and plays an important role in lung distal morphogenesis. Analysis of the mutant phenotype in mice carrying a targeted disruption ...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
AbstractThe mammalian lung, like many other organs, develops by branching morphogenesis of an epithe...
AbstractWnt signaling is essential to many events during organogenesis, including the development of...
AbstractOperational parallels in overall mechanisms of three-dimensional patterning of vertebrate or...
AbstractBranching morphogenesis in the lung serves as a model for the complex patterning that is rei...
AbstractWnt signaling is essential to many events during organogenesis, including the development of...
AbstractMembers of the Dickkopf (Dkk) family of secreted proteins are potent inhibitors of Wnt/β-cat...
AbstractWntless (Wls), a gene highly conserved across the animal kingdom, encodes for a transmembran...
AbstractThe mechanisms that control proliferation and differentiation of embryonic lung mesenchyme a...
AbstractThe formation of highly branched epithelial structures is critical for the development of ma...
Formation of the intricately branched mammalian lung requires precise coordination between the epith...
Formation of the intricately branched mammalian lung requires precise coordination between the epith...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
AbstractLung development requires reciprocal epithelial/mesenchymal interactions, mediated by signal...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
AbstractThe mammalian lung, like many other organs, develops by branching morphogenesis of an epithe...
AbstractWnt signaling is essential to many events during organogenesis, including the development of...
AbstractOperational parallels in overall mechanisms of three-dimensional patterning of vertebrate or...
AbstractBranching morphogenesis in the lung serves as a model for the complex patterning that is rei...
AbstractWnt signaling is essential to many events during organogenesis, including the development of...
AbstractMembers of the Dickkopf (Dkk) family of secreted proteins are potent inhibitors of Wnt/β-cat...
AbstractWntless (Wls), a gene highly conserved across the animal kingdom, encodes for a transmembran...
AbstractThe mechanisms that control proliferation and differentiation of embryonic lung mesenchyme a...
AbstractThe formation of highly branched epithelial structures is critical for the development of ma...
Formation of the intricately branched mammalian lung requires precise coordination between the epith...
Formation of the intricately branched mammalian lung requires precise coordination between the epith...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
AbstractLung development requires reciprocal epithelial/mesenchymal interactions, mediated by signal...
The development of a complex organ, such as the lung, relies upon precisely controlled temporal and ...
AbstractThe mammalian lung, like many other organs, develops by branching morphogenesis of an epithe...
AbstractWnt signaling is essential to many events during organogenesis, including the development of...