PTPσ drives excitatory presynaptic assembly via various extracellular and intracellular mechanisms

  • Kyung Ah Han
  • , Ji Seung Ko
  • , Gopal Pramanik
  • , Jin Young Kim
  • , Katsuhiko Tabuchi
  • , Ji Won Um
  • , Jaewon Ko

Research output: Contribution to journalArticlepeer-review

41 Scopus citations

Abstract

Leukocyte common antigen-receptor protein tyrosine phosphatases (LAR-RPTPs) are hub proteins that organize excitatory and inhibitory synapse development through binding to various extracellular ligands. Here, we report that knockdown (KD) of the LAR-RPTP family member PTPσ reduced excitatory synapse number and transmission in cultured rat hippocampal neurons, whereas KD of PTPδ produced comparable decreases at inhibitory synapses, in both cases without altering expression levels of interacting proteins. An extensive series of rescue experiments revealed that extracellular interactions of PTPσ with Slitrks are important for excitatory synapse development. These experiments further showed that the intracellular D2 domain of PTPσ is required for induction of heterologous synapse formation by Slitrk1 or TrkC, suggesting that interaction of LAR-RPTPs with distinct intracellular presynaptic proteins, drives presynaptic machinery assembly. Consistent with this, double-KD of liprin-α2 and-α3 or KD of PTPσ substrates (N-cadherin and p250RhoGAP) in neurons inhibited Slitrk6-induced, PTPσ-mediated heterologous synapse formation activity. We propose a synaptogenesis model in presynaptic neurons involving LAR-RPTP-organized retrograde signaling cascades, in which both extracellular and intracellular mechanisms are critical in orchestrating distinct synapse types.

Original languageEnglish
Pages (from-to)6700-6721
Number of pages22
JournalJournal of Neuroscience
Volume38
Issue number30
DOIs
StatePublished - 25 Jul 2018

Bibliographical note

Publisher Copyright:
© 2018 the authors.

Keywords

  • LAR-RPTPS
  • PTPσ
  • Presynaptic assembly
  • Protein
  • Protein interaction
  • Synaptic adhesion molecule

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