The ROR2 tyrosine kinase receptor regulates dendritic spine morphogenesis in hippocampal neurons

Mol Cell Neurosci. 2015 Jul:67:22-30. doi: 10.1016/j.mcn.2015.05.002. Epub 2015 May 21.

Abstract

Wnt signaling regulates synaptic development and function and contributes to the fine-tuning of the molecular and morphological differentiation of synapses. We have shown previously that Wnt5a activates non-canonical Wnt signaling to stimulate postsynaptic differentiation in excitatory hippocampal neurons promoting the clustering of the postsynaptic scaffold protein PSD-95 and the development of dendritic spines. At least three different kinds of Wnt receptors have been associated with Wnt5a signaling: seven trans-membrane Frizzled receptors and the tyrosine kinase receptors Ryk and ROR2. We report here that ROR2 is distributed in the dendrites of hippocampal neurons in close proximity to synaptic contacts and it is contained in dendritic spine protrusions. We demonstrate that ROR2 is necessary to maintain dendritic spine number and morphological distribution in cultured hippocampal neurons. ROR2 overexpression increased dendritic spine growth without affecting the density of dendritic spine protrusions in a form dependent on its extracellular Wnt binding cysteine rich domain (CRD) and kinase domain. Overexpression of dominant negative ROR2 lacking the extracellular CRD decreased spine density and the proportion of mushroom like spines, while ROR2 lacking the C-terminal and active kinase domains only affected spine morphology. Our results indicate a crucial role of the ROR2 in the formation and maturation of the postsynaptic dendritic spines in hippocampal neurons.

Keywords: Dendritic spines; Hippocampal neurons; ROR2; Synapse development; Wnt5a.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cells, Cultured
  • Dendritic Spines / metabolism*
  • Dendritic Spines / physiology
  • Hippocampus / cytology
  • Hippocampus / growth & development
  • Hippocampus / metabolism*
  • Neurogenesis*
  • Protein Structure, Tertiary
  • Rats
  • Rats, Sprague-Dawley
  • Receptor Tyrosine Kinase-like Orphan Receptors / chemistry
  • Receptor Tyrosine Kinase-like Orphan Receptors / genetics
  • Receptor Tyrosine Kinase-like Orphan Receptors / metabolism*

Substances

  • Receptor Tyrosine Kinase-like Orphan Receptors
  • Ror2 protein, rat