Morphogen gradient reconstitution reveals Hedgehog pathway design principles.
basic_science · Level V
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- Record sourced from PubMed, PMID 29622726.
- Also identified by DOI 10.1126/science.aao0645 and PMC identifier 6516753.
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Abstract
In developing tissues, cells estimate their spatial position by sensing graded concentrations of diffusible signaling proteins called morphogens. Morphogen-sensing pathways exhibit diverse molecular architectures, whose roles in controlling patterning dynamics and precision have been unclear. In this work, combining cell-based in vitro gradient reconstitution, genetic rewiring, and mathematical modeling, we systematically analyzed the distinctive architectural features of the Sonic Hedgehog pathway. We found that the combination of double-negative regulatory logic and negative feedback through the PTCH receptor accelerates gradient formation and improves robustness to variation in the morphogen production rate compared with alternative designs. The ability to isolate morphogen patterning from concurrent developmental processes and to compare the patterning behaviors of alternative, rewired pathway architectures offers a powerful way to understand and engineer multicellular patterning.
Medical subject headings
- Body Patterning
- Hedgehog Proteins
- Patched-1 Receptor