Frontiers in Cellular Neuroscience (Apr 2020)

Sonic Hedgehog Signaling Agonist (SAG) Triggers BDNF Secretion and Promotes the Maturation of GABAergic Networks in the Postnatal Rat Hippocampus

  • Quentin Delmotte,
  • Quentin Delmotte,
  • Quentin Delmotte,
  • Diabe Diabira,
  • Diabe Diabira,
  • Yasmine Belaidouni,
  • Yasmine Belaidouni,
  • Yasmine Belaidouni,
  • Mira Hamze,
  • Mira Hamze,
  • Mira Hamze,
  • Marine Kochmann,
  • Marine Kochmann,
  • Aurélie Montheil,
  • Aurélie Montheil,
  • Aurélie Montheil,
  • Jean-Luc Gaiarsa,
  • Jean-Luc Gaiarsa,
  • Jean-Luc Gaiarsa,
  • Christophe Porcher,
  • Christophe Porcher,
  • Christophe Porcher,
  • Yesser H. Belgacem,
  • Yesser H. Belgacem

DOI
https://doi.org/10.3389/fncel.2020.00098
Journal volume & issue
Vol. 14

Abstract

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Sonic hedgehog (Shh) signaling plays critical roles during early central nervous system development, such as neural cell proliferation, patterning of the neural tube and neuronal differentiation. While Shh signaling is still present in the postnatal brain, the roles it may play are, however, largely unknown. In particular, Shh signaling components are found at the synaptic junction in the maturing hippocampus during the first two postnatal weeks. This period is characterized by the presence of ongoing spontaneous synaptic activity at the cellular and network levels thought to play important roles in the onset of neuronal circuit formation and synaptic plasticity. Here, we demonstrate that non-canonical Shh signaling increases the frequency of the synchronized electrical activity called Giant Depolarizing Potentials (GDP) and enhances spontaneous GABA post-synaptic currents in the rodent hippocampus during the early postnatal period. This effect is mediated specifically through the Shh co-receptor Smoothened via intracellular Ca2+ signal and the activation of the BDNF-TrkB signaling pathway. Given the importance of these spontaneous events on neuronal network maturation and refinement, this study opens new perspectives for Shh signaling on the control of early stages of postnatal brain maturation and physiology.

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