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Hedgehog Signaling Regulates Neurogenesis in the Larval and Adult Zebrafish Hypothalamus.

Ira MaleA Tuba OzacarRita R FaganMatthew D LoringMeng-Chieh ShenVeronica A PaceChristine A DevineGrace E LawsonAlyssa LutservitzRolf O Karlstrom
Published in: eNeuro (2020)
Neurogenesis is now known to play a role in adult hypothalamic function, yet the cell-cell mechanisms regulating this neurogenesis remain poorly understood. Here, we show that Hedgehog (Hh)/Gli signaling positively regulates hypothalamic neurogenesis in both larval and adult zebrafish and is necessary and sufficient for normal hypothalamic proliferation rates. Hh-responsive radial glia represent a relatively highly proliferative precursor population that gives rise to dopaminergic, serotonergic, and GABAergic neurons. In situ and transgenic reporter analyses revealed substantial heterogeneity in cell-cell signaling within the hypothalamic niche, with slow cycling Nestin-expressing cells residing among distinct and overlapping populations of Sonic Hh (Shh)-expressing, Hh-responsive, Notch-responsive, and Wnt-responsive radial glia. This work shows for the first time that Hh/Gli signaling is a key component of the complex cell-cell signaling environment that regulates hypothalamic neurogenesis throughout life.
Keyphrases
  • single cell
  • cell therapy
  • oxidative stress
  • cell death
  • signaling pathway
  • blood brain barrier
  • drug delivery
  • crispr cas
  • cell cycle arrest
  • genetic diversity
  • subarachnoid hemorrhage