A novel juxtamembrane basolateral targeting motif regulates TGF-β receptor signaling in Drosophila
Peterson, A. J.; Murphy, S. J.; Mundt, M. G.; Shimell, M.; Leof, E. B.; O'Connor, M. B.
Show abstract
In polarized epithelial cells, receptor-ligand interactions can be restricted by different spatial distributions of the two interacting components, giving rise to an underappreciated layer of regulatory complexity. We explored whether such regulation occurs in the Drosophila wing disc, an epithelial tissue that requires the TGF-{beta} family member Dpp for growth and patterning. Dpp protein has been observed in a gradient within the columnar cells of the disc, but also uniformly in the disc lumen, leading to the question of how graded signaling is achieved in the face of two distinctly localized pools. We find the Dpp type II receptor Punt, but not the type I receptor Tkv, is enriched at the basolateral membrane, and depleted at the junctions and apical surface. Wit, a second type II receptor, shows a markedly different behavior, with the protein detected on all membrane regions but enriched at the apical side. Mutational studies identified the BLT, a short juxtamembrane sequence required for basolateral targeting of Punt in both wing discs and mammalian MDCK cells, and that dominantly confers basolateral localization on an otherwise apical receptor. Rescue of punt mutants with transgenes altered in the targeting motif showed that flies expressing apicalized Punt due to the lack of a functional BLT displayed developmental defects, female sterility and significant lethality. We also show that apicalized Punt does not produce an ectopic signal, indicating that the apical pool of Dpp is not a significant signaling source even when presented with Punt. Finally, we present evidence that the BLT acts through polarized sorting machinery that differs between types of epithelia. This suggests a code whereby each epithelial cell type may differentially traffic common receptors to enable distinctive responses to spatially localized pools of extracellular ligands.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Caenorhabditis elegans LET-413 Scribble is essential in the epidermis for growth, viability, and directional outgrowth of epithelial seam cells 96%
- A C. elegans Zona Pellucida domain protein functions via its ZPc domain 96%
- Ets Transcription Factor Pointed Controls Germline Survival In Drosophila 96%
Similar papers in this journal
- A kinase translocation reporter reveals real-time dynamics of ERK activity in Drosophila 97%
- Modelling the structure of Short Gastrulation and generation of a toolkit for studying its function in Drosophila 96%
- Interdomain interactions regulate the localization of a lipid transfer protein at ER-PM contact sites 95%
Similar papers in this journal
- Selective disruption of synaptic BMP signaling by a Smad mutation adjacent to the highly conserved H2 helix 97%
- Conserved and divergent aspects of Robo receptor signaling and regulation between Drosophila Robo1 and C. elegans SAX-3 96%
- Imaginal disc growth factors are Drosophila Chitinase-like Proteins with roles in morphogenesis and CO2 response 96%
Similar papers in this journal
- Interplay between cortical actin and E-cadherin dynamics regulates cell shape in the Drosophila embryonic epidermis 96%
- The dual Ras Association (RA) Domains of Drosophila Canoe have differential roles in linking cell junctions to the cytoskeleton during morphogenesis 96%
- Dachsous is a key player in epithelial wound closure by modulating cell shape changes and cytoskeleton dynamics 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.