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An elastic element in the protocadherin-15 tip link of the inner ear.

Raul Araya-SecchiBrandon L NeelMarcos Sotomayor
Published in: Nature communications (2016)
Tip link filaments convey force and gate inner-ear hair-cell transduction channels to mediate perception of sound and head movements. Cadherin-23 and protocadherin-15 form tip links through a calcium-dependent interaction of their extracellular domains made of multiple extracellular cadherin (EC) repeats. These repeats are structurally similar, but not identical in sequence, often featuring linkers with conserved calcium-binding sites that confer mechanical strength to them. Here we present the X-ray crystal structures of human protocadherin-15 EC8-EC10 and mouse EC9-EC10, which show an EC8-9 canonical-like calcium-binding linker, and an EC9-10 calcium-free linker that alters the linear arrangement of EC repeats. Molecular dynamics simulations and small-angle X-ray scattering experiments support this non-linear conformation. Simulations also suggest that unbending of EC9-10 confers some elasticity to otherwise rigid tip links. The new structure provides a first view of protocadherin-15's non-canonical EC linkers and suggests how they may function in inner-ear mechanotransduction, with implications for other cadherins.
Keyphrases
  • molecular dynamics simulations
  • high resolution
  • endothelial cells
  • single cell
  • magnetic resonance
  • stem cells
  • transcription factor
  • mesenchymal stem cells
  • cell migration
  • optical coherence tomography
  • optic nerve