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ADAM19 regulates Wnt signaling and neural crest specification by stabilizing ADAM13. | LitMetric

AI Article Synopsis

  • Canonical Wnt signaling is crucial during vertebrate gastrulation for forming the neural plate border (NPB) and is believed to play a role in specifying the neural crest (NC) lineage, though direct evidence has been limited.
  • Research reveals that the disintegrin metalloproteinase ADAM13 is necessary for Wnt activation and NC induction, while its paralog ADAM19 significantly influences Wnt activity and NC specification without affecting NPB formation.
  • ADAM19 acts nonproteolytically by interacting with ADAM13 to inhibit its degradation, and by stabilizing ADAM13, it can induce NC markers using Wnt signaling, highlighting a novel interaction between these proteases in regulating Wnt

Article Abstract

During vertebrate gastrulation, canonical Wnt signaling induces the formation of neural plate border (NPB). Wnt is also thought to be required for the subsequent specification of neural crest (NC) lineage at the NPB, but the direct evidence is lacking. We found previously that the disintegrin metalloproteinase ADAM13 is required for Wnt activation and NC induction in Here, we report that knockdown of ADAM13 or its close paralog ADAM19 severely downregulates Wnt activity at the NPB, inhibiting NC specification without affecting earlier NPB formation. Surprisingly, ADAM19 functions nonproteolytically in NC specification by interacting with ADAM13 and inhibiting its proteasomal degradation. Ectopic expression of stabilized ADAM13 mutants that function independently of ADAM19 can induce the NC marker/specifier in the future epidermis via Wnt signaling. These results unveil the essential roles of a novel protease-protease interaction in regulating a distinct wave of Wnt signaling, which directly specifies the NC lineage.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5963864PMC
http://dx.doi.org/10.1242/dev.158154DOI Listing

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