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Rorβ regulates selective axon-target innervation in the mammalian midbrain

  • Haewon Byun
  • , Hae Lim Lee
  • , Hong Liu
  • , Douglas Forrest
  • , Andrii Rudenko
  • , In Jung Kim

Research output: Contribution to journalArticlepeer-review

14 Scopus citations

Abstract

Developmental control of long-range neuronal connections in the mammalian midbrain remains unclear. We explored the mechanisms regulating target selection of the developing superior colliculus (SC). The SC is a midbrain center that directs orienting behaviors and defense responses. We discovered that a transcription factor, Rorβ, controls establishment of axonal projections from the SC to two thalamic nuclei: The dorsal lateral geniculate nucleus (dLGN) and the lateral posterior nucleus (LP). A genetic strategy used to visualize SC circuits revealed that in control animals Rorβ+ neurons abundantly innervate the dLGN but barely innervate the LP. The opposite phenotype was observed in global and conditional Rorb mutants: Projections to the dLGN were strongly decreased, and projections to the LP were increased. Furthermore, overexpression of Rorb in the wild type showed increased projections to the dLGN and decreased projections to the LP. In summary, we identified Rorβ as a key developmental mediator of colliculo-thalamic innervation. Such regulation could represent a general mechanism orchestrating long-range neuronal connections in the mammalian brain.

Original languageEnglish
Article numberdev171926
JournalDevelopment (Cambridge)
Volume146
Issue number14
DOIs
StatePublished - Jul 2019
Externally publishedYes

Keywords

  • Axon targeting
  • FLP-DOG
  • Midbrain
  • Rorβ
  • Superior colliculus
  • Thalamus

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