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March 14, 2026Development1 citations

Cajal-Retzius fate specification is disrupted by constitutive activation of β-Catenin in hem progenitors

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ASAmrita SinghAPArpan ParichhaDDDebarpita Datta

Key Points

  • This research aims to determine how activation of β-Catenin affects the development of Cajal-Retzius cells from hem progenitors.
  • Used mouse models to activate β-Catenin in cortical hem progenitors.
  • Examined neuronal production and identity through molecular characterization.
  • Utilized single-cell transcriptomics to analyze differentiation trajectories.
  • Neurons were produced from hem progenitors, but lacked Cajal-Retzius cell identity features.
  • The Tbr2+ differentiation stage was absent in β-Catenin gain of function mice.
  • Cajal-Retzius progenitors showed sensitivity to stabilized β-Catenin levels.

Abstract

Cajal-Retzius cells (CR cells) are the earliest born neurons in the cerebral cortex, and have been implicated in regulating neuronal migration and development of circuitry. A major source of CR cells is the cortical hem, a signaling center at the dorsal telencephalic midline. The hem functions as the hippocampal organizer via canonical WNT signaling and hem progenitors are therefore exposed to high levels of WNT ligands. We tested whether constitutive stabilization of β-Catenin (gain of function, GOF) in the mouse cortical hem progenitors supports CR cell production. We find that although neurons are produced from the hem, they do not acquire molecular features of CR cell identity. The trajectory of differentiation examined using single-cell transcriptomics reveals that immature CR cells normally display a Tbr2+ stage, which is absent upon β-Catenin GOF. These data indicate that CR progenitors in the hem are sensitive to levels of stabilized β-Catenin and that a Tbr2+ stage may be important for the acquisition of CR cell identity.

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Cite This Study

Singh et al. (2026) studied this question.

synapsesocial.com/papers/69b4fbeab39f7826a300c620https://doi.org/10.1242/dev.205072
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